Generated by All in One SEO v4.9.10, this is an llms.txt file, used by LLMs to index the site. # Core Lab Precision Diagnostics. Optimized for Performance. ## Sitemaps - [XML Sitemap](https://www.corelab.com/sitemap.xml): Contains all public & indexable URLs for this website. ## Posts - [Core Laboratories Announces Timing of Second Quarter 2026 Earnings Release and Conference Call](https://www.corelab.com/2026/core-laboratories-announces-timing-of-second-quarter-2026-earnings-release-and-conference-call/) - [Core In Action: Supporting Carbon Capture and Storage Projects in Brazil With NITRO℠](https://www.corelab.com/2026/core-in-action-supporting-carbon-capture-and-storage-projects-in-brazil-with-nitro℠/) - See how Core Lab is enabling smarter CCS in Brazil with NITRO℠ digital rock analysis—delivering fast, data-driven insights for secure CO₂ storage. - [Core in Action: Turning Measured Data into Intelligent Insight with RAPID™](https://www.corelab.com/2026/core-in-action-turning-measured-data-into-intelligent-insight-with-rapid/) - In the latest Core In Action, learn about how Core Lab's RAPID™ stands out as one of the industry’s deepest datasets, with more than 75,000 data points. - [Core In Action: SpectraStim™](https://www.corelab.com/2026/core-in-action-spectrastim/) - Discover a proven offshore cement evaluation solution for riserless completions with Core Lab's SpectraStim™ technology. - [Core In Action: Evaluating the Future of Plug-Less Completions](https://www.corelab.com/2026/core-in-action-evaluating-the-future-of-plug-less-completions/) - Every well tells a story. Core Lab's SpectraStim proprietary proppant tracer helps decode complex environments and gives operators confidence. - [Core Laboratories Q1 – 2026 Results – Form 10-Q](https://www.corelab.com/2026/core-laboratories-q1-2026-results-form-10-q/) - [2025 Core Laboratories Annual Report](https://www.corelab.com/2026/2025-core-laboratories-annual-report/) - [Core Laboratories 2025 Annual Report](https://www.corelab.com/2026/core-laboratories-2025-annual-report/) - Read Core Lab’s 2025 Annual Report highlighting financial performance and innovation in reservoir analysis and energy solutions. - [Advancing Reservoir Characterization in Colombia’s Palagua Field](https://www.corelab.com/2026/advancing-reservoir-characterization-in-colombias-palagua-field/) - Core Lab delivers geomechanics and reservoir insights in Colombia’s Palagua Field, improving waterflood planning and reservoir performance. - [Core Laboratories Q1 2026 Earnings Release](https://www.corelab.com/2026/core-laboratories-q1-2026-earnings-release/) - Core Laboratories (NYSE: "CLB") Q1 2026 Earnings Release is now available. - [Core Lab Q4 2025 Earnings Release](https://www.corelab.com/2026/core-lab-q4-2025-earnings-release/) - [Core Lab Announces Impact of the Middle East Conflict to First Quarter 2026 Guidance](https://www.corelab.com/2026/core-lab-announces-impact-of-the-middle-east-conflict-to-first-quarter-2026-guidance/) - [Core In Action: PAC™ Technology Advances Offshore Plug and Abandonment Efficiency](https://www.corelab.com/2026/core-in-action-pac-technology-advances-offshore-plug-and-abandonment-efficiency/) - Core Laboratories successfully completed an offshore plug and abandonment project on a Gulf of America well using its proprietary PAC™ technology, enabling safer and more efficient annular access for permanent barrier placement. Offshore plug and abandonment operations often require section milling to access annular spaces, a process that can introduce operational risk, extended timelines, and - [Core in Action: Advancing Unconventional Reservoir Understanding](https://www.corelab.com/2026/core-in-action-advancing-unconventional-reservoir-understanding/) - In this edition of Core In Action, learn how Core Lab’s technologies enhance reservoir characterization and improve modeling accuracy. - [2025 Form 10K](https://www.corelab.com/2026/2025-form-10k/) - [Core Lab Celebrates 90 Years of Innovation, Insights & Impact](https://www.corelab.com/2026/core-lab-celebrates-90-years-of-innovation-insights-impact/) - Marking its 90th anniversary, Core Lab President & CEO Larry Brunos reflects on decades of innovation, resilience, and industry leadership since 1936. - [Core Lab President & CEO, Larry Bruno, Featured on the In Basin Observations Podcast](https://www.corelab.com/2025/core-lab-president-ceo-larry-bruno-featured-on-the-in-basin-observations-podcast/) - Core Lab’s President and CEO Larry Bruno joins the In Basin Observations podcast to discuss leadership, markets, and industry trends. - [2024 Sustainability Report Announcement](https://www.corelab.com/2025/2024-sustainability-report-announcement/) - NEWS RELEASE CORE LAB ANNOUNCES PUBLICATION OF ITS 2024 CORPORATE SUSTAINABILITY REPORT HOUSTON (August 29, 2024) - Core Laboratories Inc. (NYSE: "CLB") ("Core", "Core Lab", or the "Company") is pleased to announce the publication of the Company’s 2024 Corporate Sustainability Report. The Report underscores Core Lab’s pursuit of a more sustainable future through - [CORE LAB ANNOUNCES PROPOSED REDOMESTICATION TO THE UNITED STATES](https://www.corelab.com/2023/core-lab-announces-proposed-redomestication-to-the-united-states/) - [Amended Core Lab Fourth Quarter And Full Year 2023 Results](https://www.corelab.com/2024/core-lab-fourth-quarter-2023-earnings-release/) - [Privacy Policy](https://www.corelab.com/2024/privacy-policy/) - [Core Lab Q2 2025 Earnings Webcast Announcement](https://www.corelab.com/2025/q2-2025-earnings-webcast-announcement/) - [Core Lab Q3 2025 Earnings Webcast Announcement](https://www.corelab.com/2025/q3-2025-earnings-webcast-announcement/) - [Core Laboratories Announces Strategic Acquisition of Brazil-based Solintec](https://www.corelab.com/2025/core-lab-solintec-aquisition-press-release/) - [Core Laboratories Announces Timing of Fourth Quarter 2025 Earnings Release and Conference Call](https://www.corelab.com/2026/core-laboratories-announces-timing-of-fourth-quarter-2025-earnings-release-and-conference-call/) - [Core Lab Q3 2025 Earnings Release](https://www.corelab.com/2025/core-lab-q3-2025-earnings-release/) - [Core Laboratories Q3 – 2025 Results - Form 10-Q](https://www.corelab.com/2025/3q-2025-results/) - [Core Laboratories’ Q4 2024 Webcast](https://www.corelab.com/2025/q4-2024-earnings-webcast-announcement/) - [Core Lab Q3 2024 Earnings Release](https://www.corelab.com/2024/core-lab-q3-2024-earnings-release/) - [Core Lab Reports Q4 and Full Year 2024 Results](https://www.corelab.com/2025/core-lab-reports-fourth-quarter-and-full-year-2024-results/) - [Core Laboratories Announces Timing of Q1 2025 Earnings Release and Conference Call](https://www.corelab.com/2025/core-laboratories-announces-timing-of-first-quarter-2025earnings-release-and-conference-call/) - [Core Laboratories 2024 Annual Report](https://www.corelab.com/2025/2024-annual-report/) - [Core Lab Q1 2025 Earnings Release](https://www.corelab.com/2025/core-lab-q1-2025-earnings-release/) - [Core Lab Q1 – 2025 Results](https://www.corelab.com/2025/1q-2025-results/) - [Core Laboratories Announces Opening of Unconventional Core Analysis Laboratory in Saudi Arabia](https://www.corelab.com/2025/core-laboratories-announces-opening-of-unconventional-core-analysis-laboratory-in-saudi-arabia/) - [Core Lab Q2 2025 Earnings Release](https://www.corelab.com/2025/core-lab-q2-2025-earnings-release/) - [Core Lab Q2 2025 Results](https://www.corelab.com/2025/2q-2025-results/) - [2019 Form 10K](https://www.corelab.com/2019/2019-form-10k/) - [2020 Form 10K](https://www.corelab.com/2020/no-title-18/) - [2004 Annual Report](https://www.corelab.com/2005/2004-annual-report/) - [2005 Annual Report](https://www.corelab.com/2006/2005-annual-report/) - [2006 Annual Report](https://www.corelab.com/2007/2006-annual-report/) - [2007 Annual Report](https://www.corelab.com/2008/2007-annual-report/) - [2008 Annual Report](https://www.corelab.com/2009/2008-annual-report/) - [2009 Annual Report](https://www.corelab.com/2010/2009-annual-report/) - [2010 Annual Report](https://www.corelab.com/2011/2010-annual-report/) - [2011 Annual Report](https://www.corelab.com/2012/2011-annual-report/) - [2012 Annual Report](https://www.corelab.com/2013/2012-annual-report/) - [2013 Annual Report](https://www.corelab.com/2014/2013-annual-report/) - [2014 Annual Report](https://www.corelab.com/2015/2014-annual-report/) - [2015 Annual Report](https://www.corelab.com/2016/2015-annual-report/) - [2016 Annual Report](https://www.corelab.com/2017/2016-annual-report/) - [2017 Annual Report](https://www.corelab.com/2018/2017-annual-report/) - [2001 Annual Report](https://www.corelab.com/2002/2001-annual-report/) - [2024 Form 10K](https://www.corelab.com/2025/2024-form-10k/) - [3Q - 2024 Results](https://www.corelab.com/2024/3q-2024-results/) - [CORE LABORATORIES’ SECOND QUARTER 2024 WEBCAST AT 7:30 A.M. CDT / 8:30 A.M. EDT ON JULY 25, 2024](https://www.corelab.com/2024/core-laboratories-second-quarter-2024-webcastat-730-a-m-cdt-830-a-m-edt-on-july-25-2024/) - [CORE LABORATORIES’ THIRD QUARTER 2024 WEBCAST AT 7:30 A.M. CDT / 8:30 A.M. EDT ON OCTOBER 24 2024](https://www.corelab.com/2024/core-laboratories-third-quarter-2024-webcastat-730-a-m-cdt-830-a-m-edt-on-october-24-2024/) - [CORE LAB REPORTS FOURTH-QUARTER 2019 RESULTS](https://www.corelab.com/2020/core-lab-reports-fourth-quarter-2019-results/) - [CORE LAB REPORTS THIRD-QUARTER 2019 RESULTS](https://www.corelab.com/2019/core-lab-reports-third-quarter-2019-results/) - [CORE LAB REPORTS SECOND-QUARTER 2019 RESULTS](https://www.corelab.com/2019/core-lab-reports-second-quarter-2019-results/) - [CORE LAB REPORTS FIRST-QUARTER 2019 RESULTS](https://www.corelab.com/2019/core-lab-reports-first-quarter-2019-results/) - [CORE LAB REPORTS FIRST-QUARTER 2020 RESULTS](https://www.corelab.com/2020/core-lab-reports-first-quarter-2020-results/) - [CORE LAB REPORTS SECOND-QUARTER 2020 RESULTS](https://www.corelab.com/2020/core-lab-reports-second-quarter-2020-results/) - [CORE LAB REPORTS THIRD-QUARTER 2020 RESULTS](https://www.corelab.com/2020/core-lab-reports-third-quarter-2020-results/) - [CORE LAB REPORTS FOURTH-QUARTER 2020 RESULTS](https://www.corelab.com/2021/core-lab-reports-fourth-quarter-2020-results/) - [SPE-220972: Time Dependent Conductivity of In-Basin Regional Sands](https://www.corelab.com/2024/spe-220972-time-dependent-conductivity-of-in-basin-regional-sands/) - SPE-220972 R.J. Duenckel; R.D. Barree; Kimberly Sutter; B.T. Hlidek Presented at the SPE Annual Technology Conference and Exhibition, 2024 AbstractBaseline conductivity of a proppant pack is to be measured and reported at 50 hours at constant stress according to procedures set out in API RP 19D. However, it has long been recognized that conductivity at - [2Q – 2024 Results](https://www.corelab.com/2024/2q-2024-results/) - [CORE LAB Q2 2024 EARNINGS RELEASE](https://www.corelab.com/2024/core-lab-q2-2024-earnings-release/) - [2023 Annual Report](https://www.corelab.com/2024/2023-annual-report/) - [1Q - 2024 Results](https://www.corelab.com/2024/1q-2024-results/) - [CORE LAB Q1 2024 EARNINGS RELEASE](https://www.corelab.com/2024/core-lab-q1-2024-earnings-release/) - [CORE LABORATORIES' FIRST QUARTER 2024 WEBCAST](https://www.corelab.com/2024/core-laboratories-first-quarter-2024-webcast/) - [CORE LAB THIRD QUARTER 2023 EARNINGS RELEASE](https://www.corelab.com/2023/core-lab-third-quarter-2023-earnings-release/) - [2023 Form 10K](https://www.corelab.com/2024/2023-form-10k/) - [CORE LAB REPORTS FOURTH QUARTER AND FULL YEAR 2023 RESULTS](https://www.corelab.com/2024/core-lab-reports-fourth-quarter-and-full-year-2023-results/) - [CORE LAB REPORTS FOURTH QUARTER 2017 RESULTS](https://www.corelab.com/2018/core-lab-reports-fourth-quarter-2017-results/) - [CORE LAB REPORTS SECOND QUARTER 2021 RESULTS](https://www.corelab.com/2022/core-lab-reports-fourth-quarter-2021-results/) - [CORE LAB REPORTS FOURTH QUARTER 2004 RESULTS](https://www.corelab.com/2005/core-lab-reports-fourth-quarter-2004-results-2/) - [CORE LAB REPORTS FIRST QUARTER 2022 RESULTS](https://www.corelab.com/2022/core-lab-reports-first-quarter-2022-results/) - [CORE LAB REPORTS FOURTH QUARTER 2018 RESULTS](https://www.corelab.com/2019/core-lab-reports-fourth-quarter-2018-results/) - [CORE LAB REPORTS FIRST QUARTER 2011 RESULTS](https://www.corelab.com/2011/core-lab-reports-first-quarter-2011-results/) - [CORE LAB REPORTS FOURTH QUARTER 2022 RESULTS](https://www.corelab.com/2023/core-lab-fourth-quater-2022-earnings-release/) - [CORE LAB REPORTS FIRST QUARTER 2021 RESULTS](https://www.corelab.com/2021/core-lab-reports-first-quarter-2021-results/) - [CORE LAB REPORTS THIRD QUARTER 2018 RESULTS](https://www.corelab.com/2018/core-lab-reports-third-quarter-2018-results/) - [CORE LAB REPORTS SECOND QUARTER 2018 RESULTS](https://www.corelab.com/2018/core-lab-reports-second-quarter-2018-results/) - [CORE LAB REPORTS FIRST QUARTER 2018 RESULTS](https://www.corelab.com/2018/core-lab-reports-first-quarter-2018-results/) - [CORE LAB REPORTS THIRD QUARTER 2017 RESULTS](https://www.corelab.com/2017/core-lab-reports-third-quarter-2015-results-2/) - [CORE LAB REPORTS SECOND QUARTER 2017 RESULTS](https://www.corelab.com/2017/core-lab-reports-second-quarter-2017-results/) - [CORE LAB REPORTS FIRST QUARTER 2017 RESULTS](https://www.corelab.com/2017/core-lab-reports-first-quarter-2017-results/) - [CORE LAB REPORTS FOURTH QUARTER 2016 RESULTS](https://www.corelab.com/2017/core-lab-reports-fourth-quarter-2016-results/) - [CORE LAB REPORTS THIRD QUARTER 2016 RESULTS](https://www.corelab.com/2016/core-lab-reports-third-quarter-2016-results/) - [CORE LAB REPORTS SECOND QUARTER 2016 RESULTS](https://www.corelab.com/2016/core-lab-reports-second-quarter-2016-results/) - [CORE LAB REPORTS FIRST QUARTER 2016 RESULTS](https://www.corelab.com/2016/core-lab-reports-first-quarter-2016-results/) - [CORE LAB REPORTS FOURTH QUARTER 2015 RESULTS](https://www.corelab.com/2015/core-lab-reports-fourth-quarter-2015-results/) - [CORE LAB REPORTS THIRD QUARTER 2015 RESULTS](https://www.corelab.com/2015/core-lab-reports-third-quarter-2015-results/) - [CORE LAB REPORTS SECOND QUARTER 2015 RESULTS](https://www.corelab.com/2015/core-lab-reports-second-quarter-2015-results/) - [CORE LAB REPORTS FIRST QUARTER 2015 RESULTS](https://www.corelab.com/2015/core-lab-reports-first-quarter-2015-results/) - [CORE LAB REPORTS FOURTH QUARTER 2012 RESULTS](https://www.corelab.com/2013/core-lab-reports-fourth-quarter-2012-results/) - [CORE LAB REPORTS FOURTH QUARTER 2014 RESULTS](https://www.corelab.com/2015/core-lab-reports-fourth-quarter-2014-results/) - [CORE LAB REPORTS THIRD QUARTER 2014 RESULTS](https://www.corelab.com/2014/core-lab-reports-third-quarter-2014-results/) - [CORE LAB REPORTS SECOND QUARTER 2014 RESULTS](https://www.corelab.com/2014/core-lab-reports-second-quarter-2014-results/) - [CORE LAB REPORTS FIRST QUARTER 2014 RESULTS](https://www.corelab.com/2014/core-lab-reports-first-quarter-2014-results/) - [CORE LAB REPORTS FOURTH QUARTER 2013 RESULTS](https://www.corelab.com/2014/core-lab-reports-fourth-quarter-2013-results/) - [CORE LAB REPORTS THIRD QUARTER 2013 RESULTS](https://www.corelab.com/2013/core-lab-reports-third-quarter-2013-results/) - [CORE LAB REPORTS SECOND QUARTER 2013 RESULTS](https://www.corelab.com/2013/core-lab-reports-second-quarter-2013-results/) - [CORE LAB REPORTS FIRST QUARTER 2013 RESULTS](https://www.corelab.com/2013/core-lab-reports-first-quarter-2013-results/) - [CORE LAB REPORTS THIRD QUARTER 2012 RESULTS](https://www.corelab.com/2012/core-lab-reports-third-quarter-2012-results/) - [CORE LAB REPORTS SECOND QUARTER 2012 RESULTS](https://www.corelab.com/2012/core-lab-reports-second-quarter-2012-results/) - [CORE LAB REPORTS FIRST QUARTER 2012 RESULTS](https://www.corelab.com/2012/core-lab-reports-first-quarter-2012-results/) - [CORE LAB REPORTS FOURTH QUARTER 2011 RESULTS](https://www.corelab.com/2012/core-lab-reports-fourth-quarter-2011-results/) - [CORE LAB REPORTS THIRD QUARTER 2011 RESULTS](https://www.corelab.com/2011/core-lab-reports-third-quarter-2011-results/) - [CORE LAB REPORTS THIRD QUARTER 2010 RESULTS](https://www.corelab.com/2010/core-lab-reports-third-quarter-2010-results/) - [CORE LAB REPORTS SECOND QUARTER 2010 RESULTS](https://www.corelab.com/2010/core-lab-reports-second-quarter-2010-results/) - [CORE LAB REPORTS FOURTH QUARTER 2010 RESULTS](https://www.corelab.com/2011/core-lab-reports-fourth-quarter-2010-results/) - [CORE LAB REPORTS FIRST QUARTER 2010 RESULTS](https://www.corelab.com/2010/core-lab-reports-first-quarter-2010-results/) - [CORE LAB REPORTS SECOND QUARTER 2011 RESULTS](https://www.corelab.com/2011/core-lab-reports-second-quarter-2011-results/) - [CORE LAB REPORTS FOURTH QUARTER 2009 RESULTS](https://www.corelab.com/2010/core-lab-reports-fourth-quarter-2009-results/) - [CORE LAB REPORTS THIRD QUARTER 2009 RESULTS](https://www.corelab.com/2009/core-lab-reports-third-quarter-2009-results/) - [CORE LAB REPORTS SECOND QUARTER 2009 RESULTS](https://www.corelab.com/2009/core-lab-reports-second-quarter-2009-results/) - [CORE LAB REPORTS FIRST QUARTER 2009 RESULTS](https://www.corelab.com/2009/core-lab-reports-first-quarter-2009-results/) - [CORE LAB REPORTS FOURTH QUARTER 2008 RESULTS](https://www.corelab.com/2008/core-lab-reports-fourth-quarter-2008-results/) - [CORE LAB REPORTS THIRD QUARTER 2008 RESULTS](https://www.corelab.com/2008/core-lab-reports-third-quarter-2008-results/) - [CORE LAB REPORTS SECOND QUARTER 2008 RESULTS](https://www.corelab.com/2008/core-lab-reports-second-quarter-2008-results/) - [CORE LAB REPORTS FIRST QUARTER 2008 RESULTS](https://www.corelab.com/2008/core-lab-reports-first-quarter-2008-results/) - [CORE LAB REPORTS FOURTH QUARTER 2007 RESULTS](https://www.corelab.com/2008/core-lab-reports-fourth-quarter-2007-results/) - [CORE LAB REPORTS THIRD QUARTER 2007 RESULTS](https://www.corelab.com/2007/core-lab-reports-third-quarter-2007-results/) - [CORE LAB REPORTS SECOND QUARTER 2007 RESULTS](https://www.corelab.com/2007/core-lab-reports-second-quarter-2007-results/) - [CORE LAB REPORTS FIRST QUARTER 2007 RESULTS](https://www.corelab.com/2007/core-lab-reports-first-quarter-2007-results/) - [CORE LAB REPORTS FOURTH QUARTER 2006 RESULTS](https://www.corelab.com/2007/core-lab-reports-fourth-quarter-2006-results/) - [CORE LAB REPORTS THIRD QUARTER 2006 RESULTS](https://www.corelab.com/2006/core-lab-reports-third-quarter-2006-results/) - [CORE LAB REPORTS SECOND QUARTER 2006 RESULTS](https://www.corelab.com/2006/core-lab-reports-second-quarter-2006-results/) - [CORE LAB REPORTS FIRST QUARTER 2006 RESULTS](https://www.corelab.com/2006/core-lab-reports-first-quarter-2006-results-2/) - [CORE LAB REPORTS FIRST QUARTER 2006 RESULTS](https://www.corelab.com/2006/core-lab-reports-first-quarter-2006-results/) - [CORE LAB REPORTS FOURTH QUARTER 2005 RESULTS](https://www.corelab.com/2006/core-lab-reports-fourth-quarter-2005-results/) - [CORE LAB REPORTS THIRD QUARTER 2005 RESULTS](https://www.corelab.com/2005/core-lab-reports-third-quarter-2005-results/) - [CORE LAB REPORTS SECOND QUARTER 2005 RESULTS](https://www.corelab.com/2005/core-lab-reports-second-quarter-2005-results/) - [CORE LAB REPORTS FIRST QUARTER 2005 RESULTS](https://www.corelab.com/2005/core-lab-reports-first-quarter-2005-results/) - [CORE LAB REPORTS FIRST QUARTER 2004 RESULTS](https://www.corelab.com/2004/core-lab-reports-first-quarter-2004-results/) - [CORE LABORATORIES’ FOURTH QUARTER 2023 WEBCAST AT 7:30 A.M. CST / 8:30 A.M. EST ON FEBRUARY 1, 2024](https://www.corelab.com/2024/core-laboratories-fourth-quarter-2023-webcastat-730-a-m-cst-830-a-m-est-on-february-1-2024/) - [3Q - 2023 Results](https://www.corelab.com/2023/3q-2023-results/) - [2Q – 2023 Results](https://www.corelab.com/2023/2q-2023-results/) - [SPE-187451: Proppants- What 30 Years of Study has Taught Us](https://www.corelab.com/2017/spe-187451-proppants-what-30-years-of-study-has-taught-us/) - SPE-187451 R. J. Duenckel; R. D. Barree; S. Drylie; L. G. O'Connell; K. L. Abney; M. W. Conway; N.. Moore; F. Chen AbstractHydraulic fracturing, when applied in concert with horizontal drilling, has led to a rejuvenation and revolution in the oil and gas industry that has been felt globally. When once development and reserve addition - [SPE-179125: The Science of Proppant Conductivity Testing - Lessons Learned and Best Practices](https://www.corelab.com/2016/spe-179125-the-science-of-proppant-conductivity-testing-lessons-learned-and-best-practices/) - SPE-179125 Robert Duenckel; Nick Moore; Lisa O'Connell; Kathy Abney; Stephen Drylie; Feiyan Chen Presented at the SPE Hydraulic Fracturing Technology Conference, 2016 AbstractThe testing of proppants to determine conductivity and permeability at closure stress is an important aspect of the design and evaluation of hydraulic fractures. The data obtained from these tests are important for - [SPE-179135: Generic Correlations for Proppant-Pack ConductivitySPE-179135:](https://www.corelab.com/2017/spe-179135-generic-correlations-for-proppant-pack-conductivityspe-179135/) - SPE-179135 R. D. Barree; J. L. Miskimins; M. W. Conway (ret.); R.. Duenckel SummaryWith the large number of fracture stages and the size of jobs being pumped in horizontal wells, many companies have elected to use nonstandard or noncommercial natural sands as propping agents. The Stim-Laboratory Proppant Conductivity Consortium, supported by approximately 50 proppant suppliers, - [CORE LABORATORIES’ THIRD QUARTER 2023 WEBCAST](https://www.corelab.com/2023/core-laboratories-third-quarter-2023-webcast/) - [CORE LABORATORIES AND HALLIBURTON ANNOUNCE COLLABORATION TO INTEGRATE DIGITAL ROCK CAPABILITIES WITH LABORATORY MEASURED DATA](https://www.corelab.com/2023/core-laboratories-and-halliburton-announce-collaboration-to-integrate-digital-rock-capabilities-with-laboratory-measured-data/) - [SPE-210134: Perf Guns, They’re Not Just for Holes Anymore! Perf Cluster Tracer Injection](https://www.corelab.com/2022/spe-210134-perf-guns-theyre-not-just-for-holes-anymore-perf-cluster-tracer-injection/) - SPE-210134 Christopher Squires, Brad Leonard, Shaun Geerts, Matthew Clay Presented at SPE Annual Technical Conference and Exhibition, 2022 Abstract Oilfield water and oil tracers have historically been pumped into the fracturing fluid during well stimulation. This paper will introduce an alternative method of injecting oilfield tracers that utilizes perforating guns with energetic propellant to force the - [CORE LAB REPORTS SECOND QUARTER 2023 RESULTS](https://www.corelab.com/2023/core-lab-reports-second-quarter-2023-results/) - [1Q - 2023 Results](https://www.corelab.com/2023/1q-2023-results/) - [2021 Annual Report and Accounts (IFRS)](https://www.corelab.com/2021/no-title-22/) - [2022 Annual Report and Accounts (IFRS)](https://www.corelab.com/2023/2022-annual-report/) - [2021 Semi-Annual Report (IFRS)](https://www.corelab.com/2021/no-title-23/) - [2022 Semi-Annual Report (IFRS)](https://www.corelab.com/2022/no-title-31/) - [2022 Form 10K](https://www.corelab.com/2022/form-10k-2022/) - [2021 Form 10K](https://www.corelab.com/2021/no-title-27/) - [URTeC-3855094: Hybrid Expandable Liner System: A Performance-Enhancing, CostEffective Alternative to Bullhead Refracturing](https://www.corelab.com/2023/hybrid-expandable-liner-system-a-performance-enhancing-costeffective-alternative-to-bullhead-refracturing/) - URTeC: 3855094 Kevin Eichinger*1, Sam French1, Ken Day1, Jared Brady1, Ryan Epperson1, Richard Leonard2, Brad Leonard2; 1. BKV Corporation, 2. ProTechnics, Core Laboratories. Presented at Unconventional Resource Technology Conference, 2023 AbstractSubsurface complexities related to the formation of Peripheral Foreland Basins (PFBs) can have significant impacts on unconventional resource development within their respective basin. In the Arkoma - [URTeC-3871303: Utilizing a Multidisciplinary Approach to Reservoir and Completion Optimization within the Woodford Shale Play of the Arkoma Basin](https://www.corelab.com/2023/utilizing-a-multidisciplinary-approach-to-reservoir-and-completionoptimization-within-the-woodford-shale-play-of-the-arkoma-basin/) - URTeC: 3871303 Stephen C. Zagurski1, Steve Asbill1, Christopher M. Smith2, Dick Leonard3, Juan Dela Garza*4, Tanner Wood3, Paul McColgan5, Michael Smith2, Brad Leonard3, StevenBourgoyne4 1. Foundation Energy Management, Addison, TX, United States. 2.Advanced Hydrocarbon Stratigraphy, Tulsa, OK, United States. 3. Protechnics/CoreLab, Houston, TX, United States. 4. Seismos, Austin, TX, United States. 5. McColganSeismic Interpretation Service, - [CORE LABORATORIES’ SECOND QUARTER 2023 WEBCAST](https://www.corelab.com/2023/core-laboratories-second-quarter-2023-webcast/) - [CORE LAB REPORTS FIRST QUARTER 2023 RESULTS](https://www.corelab.com/2023/core-lab-reports-first-quarter-2023-results/) - [CORE LABORATORIES’ FIRST QUARTER 2023 WEBCAST AT 7:30 A.M. CDT / 2:30 P.M. CEST ON APRIL 27, 2023](https://www.corelab.com/2023/core-laboratories-first-quarter-2023-webcastat-730-a-m-cdt-230-p-m-cest-on-april-27-2023/) - [CORE LABORATORIES’ FOURTH QUARTER 2022 WEBCAST AT 7:30 A.M. CST / 2:30 P.M. CET ON FEBRUARY 2, 2023](https://www.corelab.com/2023/core-laboratories-fourth-quarter-2022-webcast-at-730-a-m-cst-230-p-m-cet-on-february-2-2023/) - [2018 Annual Report](https://www.corelab.com/2019/2018-annual-report/) - [2019 Annual Report](https://www.corelab.com/2020/2019-annual-report/) - [2020 Annual Report](https://www.corelab.com/2020/no-title-17/) - [2021 Annual Report](https://www.corelab.com/2021/no-title-26/) - [Core Laboratories' First Quarter 2022 Webcast at 7:30 A.M. CST / 2:30 P.M. CET on April 28, 2022](https://www.corelab.com/2022/core-laboratories-first-quarter-2022-webcast-at-730-a-m-cst-230-p-m-cet-on-april-28-2022/) - Core Laboratories' First Quarter 2022 Webcast at 7:30 A.M. CST / 2:30 P.M. CET on April 28, 2022 - [Core Lab Files Semi-Annual IFRS Financial Statements dated 30 June 2022](https://www.corelab.com/2022/core-lab-files-semi-annual-ifrs-financial-statements-dated-30-june-2022/) - 2022_09_12_press_release.pdf (corelab.com) - [Core Lab Reports Additional Share Repurchases](https://www.corelab.com/2021/core-lab-reports-additional-share-repurchases-4/) - Core Lab Reports Additional Share Repurchases - [Core Lab Reports Additional Share Repurchases](https://www.corelab.com/2021/core-lab-reports-additional-share-repurchases-3/) - Core Lab Reports Additional Share Repurchases - [Core Lab Reports Additional Share Repurchases](https://www.corelab.com/2022/core-lab-reports-additional-share-repurchases-2/) - Core Lab Reports Additional Share Repurchases - [Core Lab Reports Additional Share Repurchases](https://www.corelab.com/2022/core-lab-reports-additional-share-repurchases/) - Core Lab Reports Additional Share Repurchases - [Core Laboratories Q1 2022 Guidance Update and CCS Consortium](https://www.corelab.com/2022/core-laboratories-q1-2022-guidance-update-and-ccs-consortium/) - Core Laboratories Q1 2022 Guidance Update and CCS Consortium - [Core Laboratories Announces a Strategic Alliance with Talos Energy Inc.](https://www.corelab.com/2022/core-laboratories-announces-a-strategic-alliance-with-talos-energy-inc/) - Core Laboratories Announces a Strategic Alliance with Talos Energy Inc. - [Core Lab Files Annual Report & Financial Statements Prepared in Accordance with International Financial Reporting Standards for 31 December 2021](https://www.corelab.com/2022/core-lab-files-annual-report-financial-statements-prepared-in-accordance-with-international-financial-reporting-standards-for-31-december-2021/) - Core Lab Files Annual Report & Financial Statements Prepared in Accordance with International Financial Reporting Standards for 31 December 2021 - [Core Lab Announces Results of its 2022 Annual Shareholder Meeting](https://www.corelab.com/2022/core-lab-announces-results-of-its-2022-annual-shareholder-meeting/) - Core Lab Announces Results of its 2022 Annual Shareholder Meeting - [Core Lab Announces $60,000,000 At-The-Market Equity Offering Program](https://www.corelab.com/2022/core-lab-announces-60000000-at-the-market-equity-offering-program/) - CORE LAB ANNOUNCES $60,000,000 AT-THE-MARKET EQUITY OFFERING PROGRAM - [Core Laboratories’ Third Quarter 2022 Webcast At 7:30 A.M. Cdt / 2:30 P.M. CEST On October 27, 2022](https://www.corelab.com/2022/core-laboratories-third-quarter-2022-webcast-at-730-a-m-cdt-230-p-m-cest-on-october-27-2022/) - [2021 Remuneration Report](https://www.corelab.com/2021/no-title-21/) - [1Q - 2021 Results](https://www.corelab.com/2021/no-title-25/) - [3Q - 2021 Results](https://www.corelab.com/2021/no-title-28/) - [2Q - 2021 Results](https://www.corelab.com/2021/no-title-24/) - [1Q - 2022 Results](https://www.corelab.com/2022/no-title-30/) - [2Q - 2022 Results](https://www.corelab.com/2022/no-title-29/) - [3Q - 2022 Results](https://www.corelab.com/2022/no-title-32/) - [Core Lab Announces Q1 2019 Quarterly Dividend](https://www.corelab.com/2019/no-title-7/) - [Core Lab Announces Q2 2019 Quarterly Dividend](https://www.corelab.com/2019/no-title-8/) - [Core Lab Announces Q3 2019 Quarterly Dividend](https://www.corelab.com/2019/no-title-9/) - [Core Lab Announces Q4 2019 Quarterly Dividend](https://www.corelab.com/2019/no-title-10/) - [Core Lab Announces Q1 2020 Quarterly Dividend](https://www.corelab.com/2020/no-title-11/) - [Core Lab Announces Q2 2020 Quarterly Dividend](https://www.corelab.com/2020/no-title-13/) - [Core Lab Announces Q3 2020 Quarterly Dividend](https://www.corelab.com/2020/no-title-14/) - [Core Lab Announces Q4 2020 Quarterly Dividend](https://www.corelab.com/2020/no-title-12/) - [Core Lab Announces Q1 2021 Quarterly Dividend](https://www.corelab.com/2021/no-title-15/) - [Core Lab Reports Second-Quarter 2021 Results](https://www.corelab.com/2021/core-lab-reports-second-quarter-2021-results/) - [Core Lab Reports Third-Quarter 2021 Results](https://www.corelab.com/2021/core-lab-reports-third-quarter-2021-results/) - [Core Laboratories' Fourth Quarter 2021 Webcast at 7:30 A.M. 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Note - if you don't see the email, please don't forget to check your spam folder The invitation e-mail header will look like this: And the invitation e-mail body will look like this: After clicking "Accept invitation" you will be prompted to log - [Quote Header](https://www.corelab.com/quote-header/) ## Radius Portfolio - [Digital Rock Characterization](https://www.corelab.com/portfolio/digital-rock-characterization/) ## Case Studies - [CCUS Consortium](https://www.corelab.com/casestudies/ccus-consortium/) - Core Laboratories is offering an industry led consortium to address and understand the risks and challenges associated with geological storage of CO2. Each year the topics are voted on by member companies. Historical year’s programs will be accessible by new members. 2025 Program Details Reservoir Benchmarking and Desiccation Dynamics Development of an analog database built - [Worldwide Rock Catalog™](https://www.corelab.com/casestudies/a-catalog-of-geological-and-engineering-properties-for-sandstones-and-carbonates/) - JIP Available in RAPID Core Laboratories is pleased to offer membership in an ongoing project designed to characterize and evaluate the geological, petrophysical, and engineering properties of sandstone and carbonate rock types. The resultant Worldwide Rock Catalog™ serves member companies as a reference source of rock property data covering a broad spectrum of reservoir rock - [Equatorial Atlantic, West Africa: Transform Basins of Côte d’Ivoire (Phase IV 2024)](https://www.corelab.com/casestudies/equatorial-atlantic-west-africa-transform-basins-of-cote-divoire-phase-iv/) - Core Laboratories and PETROCI are pleased to present our latest collaborative REGIONAL GEOLOGICAL STUDY of the IVORIAN MARGIN. We are excited to announce the launch of our Côte d'Ivoire Phase IV project, which commenced in the second quarter of 2024. This project expands our existing database by adding 27 new study wells to the 96 - [Austin Chalk Study](https://www.corelab.com/casestudies/austin-chalk-study/) - Reservoir Characterization and Production Properties Core Laboratories is proposing to interested companies participation in a multi-company, geo-engineering study of the Austin Chalk which should dovetail nicely with our South Texas and East Texas Eagle Ford studies. This project consists of the characterization and evaluation of numerous conventional cores targeting the Austin Chalk. Specifically, the prospective - [Advanced Rock Typing on Percussion Sidewall Core](https://www.corelab.com/casestudies/art-on-pswc/) - [Shale Reservoirs Global](https://www.corelab.com/casestudies/shale-reservoirs-global/) - Reservoir Characterization and Production Properties* - Available in RAPID Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of shale reservoirs. These shale reservoirs have proven to be challenging in terms of reservoir characterization, predicting producibility potential, estimating ultimate recovery, and optimizing fracture stimulation techniques. Many companies either do - [Marcellus Shale Study](https://www.corelab.com/casestudies/marcellus-regional-shale/) - Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of the Marcellus Shale. This gas shale reservoir has proved to be challenging in terms of reservoir characterization, predicting producibility potential, estimating ultimate recovery, and optimizing fracture stimulation techniques. Many companies either do not have or have limited rock property - [Upper Devonian Study](https://www.corelab.com/casestudies/upper-devonian/) - Reservoir Characterization and Production Properties Several members of our highly successful Marcellus Shale Project have encouraged Core Lab to initiate a similar project in the Upper Devonian black, organic-rich shales in the gas and liquids maturity windows of northwest Pennsylvania and possibly in New York. The sequence of Upper Devonian shales include in ascending stratigraphic - [Utica Shale Study](https://www.corelab.com/casestudies/utica-shale/) - Several members of our highly successful Marcellus Shale Project have encouraged Core Lab to initiate a similar project in the Utica Shale. The Utica Shale is an upper Ordovician-aged, calcareous, black shale that extends across the Appalachian Plateau from New York and Quebec, Canada, south to Tennessee. It therefore, underlies the Marcellus and extends farther - [Arkansas - Louisiana Lower Cretaceous Study](https://www.corelab.com/casestudies/arkansas-louisiana-lower-cretaceous/) - Regional Geological Study of the Lower Cretaceous Pettet, James, and Rodessa Facies in the South Arkansas - North Louisiana Area The south Arkansas-north Louisiana (Arkla) area has long been the site of active exploration for structural and structural-stratigraphic traps. As most known structures have been extensively drilled, the focus is now centered on oil and - [Lower Smackover Brown Dense Study](https://www.corelab.com/casestudies/lower-smackover-brown-dense/) - One of the most prolific source rocks in the Gulf Coast Basin area is the Lower Smackover "Brown Dense" section. It is the source rock for the overlying Upper Smackover carbonate-shoal conventional reservoirs. This organically-laminated, carbonate mudstone section rims the Gulf Coast Basin from Florida to East Texas. It may contain liquid hydrocarbons that might - [Cotton Valley-Bossier](https://www.corelab.com/casestudies/cotton-valley-bossier/) - The Integrated Reservoir Solutions division of Core Laboratories is offering to interested companies participation in a project designed to optimize operators’ exploitation of Cotton Valley-Bossier reservoirs in the East Texas and North Louisiana areas. Recent discussions with several operators in the trend indicate that many operators are having common problems in the formation evaluation, lateral - [East Texas Basin Lower Cretaceous Regional Study](https://www.corelab.com/casestudies/east-texas-basin-lower-cretaceous-regional-study/) - GLEN ROSE CARBONATES AND SILICICLASTICS IN THE EAST TEXAS BASIN Core Laboratories completed a study of Glen Rose strata in the East Texas Basin, to address problems related to exploration, reservoir evaluation, and exploitation of these Cretaceous Age reservoirs. The objective of the study is to provide participating companies with detailed geological analysis and well - [East Texas Smackover Study](https://www.corelab.com/casestudies/east-texas-smackover-study/) - GEOLOGIC STUDY AND RESERVOIR EVALUATION OF THE EAST TEXAS BASIN SMACKOVER FORMATION Core Laboratories is offering for resale a completed study of Jurassic Smackover Formation strata in east Texas. The study area includes Rains, Limestone, Van Zandt, Freestone, Henderson and Wood Counties with sixteen (16) conventionally cored wells. The objectives of this study are to: - [Haynesville & Bossier Shale Evaluation](https://www.corelab.com/casestudies/haynesville-bossier-shale-evaluation/) - Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of the Haynesville and Bossier Shale in East Texas and North Louisiana. This gas shale reservoir has proved to be challenging in terms of reservoir characterization, predicting producibility potential, estimating ultimate recovery, and optimizing fracture stimulation techniques. Many companies either - [James Lime](https://www.corelab.com/casestudies/james-lime/) - Geological, Petrophysical and Production Study For Improved Formation Evaluation and Optimal Well Completions The Integrated Reservoir Solutions division of Core Laboratories is offering to interested operators participation in a project designed to optimize operators' exploration and exploitation of James Lime reservoirs in the East Texas and North Louisiana areas, with a possible extension to south - [Travis Peak - Hosston Sandstones Study](https://www.corelab.com/casestudies/travis-peak-hosston-sandstones-study/) - The Integrated Reservoir Solutions division of Core Laboratories is offering to interested companies participation in a project designed to optimize operators' exploitation of Travis Peak - Hosston reservoirs in the East Texas and North Louisiana areas. Recent discussions with several operators in the trend indicate that many operators are having common problems in the formation - [Woodbine Regional Study](https://www.corelab.com/casestudies/woodbine-regional-study/) - REGIONAL GEOLOGIC STUDY RESERVOIR EVALUATION OF THE WOODBINE FORMATION - EAST TEXAS - Available in RAPID The Woodbine of upper Cretaceous Age has been one of the most prolific oil and gas targets in the East Texas Basin. Exploration for Woodbine production in east Texas has been intensive since the first discovery was made at - [Deep Shelf Gulf of Mexico Regional Study ](https://www.corelab.com/casestudies/deep-shelf-gulf-of-mexico-regional-study/) - RESERVOIR QUALITY RESERVOIR QUALITY PREDICTION AND SEAL ROCK EVALUATION, DEEP SHELF GULF OF MEXICO - Available in RAPID Operators in the Gulf of Mexico are directing their efforts toward the exploration and exploitation of deep reservoirs in the shelf area of the Gulf of Mexico. These reservoirs range in depth from 15,000 to 30,000 feet - [Deepwater Gulf of Mexico Study ](https://www.corelab.com/casestudies/deepwater-gulf-of-mexico-study/) - REGIONAL CORE AND BIOSTRATIGRAPHIC STUDY OF THE DEEPWATER BLOCKS GULF OF MEXICO - Available in RAPID Core Laboratories is conducting one of the largest regional geological and petrophysical studies of conventional cores taken from numerous wells in the deepwater blocks of the Gulf of Mexico available to the industry. This study focus is on determining - [Deepwater Gulf of Mexico Study - Phase II](https://www.corelab.com/casestudies/deepwater-gulf-of-mexico-study-phase-ii/) - Since the completion of our Phase 1 project, operators have continued to explore and appraise new deepwater reservoirs. Some of these include Shenandoah, Heidelberg, Gila, Tiber, Rydberg, Leon, Dantzler, Who Dat, Delta House, Big Bend, Gunflint Moccasin, Samurai, Hadrian, Lucius, Caesar, Tonga, Julia, Big Foot, Logan and others. Consequently, our Phase 2 project will entail - [Offshore Louisiana and Texas Miocene Regional Study](https://www.corelab.com/casestudies/offshore-louisiana-and-texas-miocene-regional-study/) - REGIONAL CORE AND BIOSTRATIGRAPHIC STUDY OF THE MIOCENE OFFSHORE TEXAS AND LOUISIANA - Available in RAPID Core Laboratories conducted one of the industry's most comprehensive regional geological and petrophysical study of the offshore Miocene from over one hundred wells with conventional cores in the Gulf of Mexico. This large project consists of two separate, but - [Wilcox Provenance Database - Available in RAPID](https://www.corelab.com/casestudies/wilcox-provenance-database-available-in-rapid/) - The Integrated Reservoir Solutions Division has compiled a Wilcox provenance dataset from the Core Lab Texas and Louisiana Wilcox Regional Studies. This dataset will allow operators to conduct proprietary sandstone provenance studies in the Deepwater Gulf of Mexico. This dataset consists of Paleocene to Lower Eocene sandstone reservoirs expected to be encountered in the Alaminos - [EOR - Eagle Ford](https://www.corelab.com/casestudies/eor-eagle-ford/) - Enhanced Oil Recovery The Integrated Reservoir Solutions Division of Core Laboratories is proposing a joint industry laboratory investigation of enhanced oil recovery for the Eagle Ford Shale in South Texas. This project follows our highly successful joint industry project entitled Eagle Ford Shale Evaluation – Reservoir Characterization and Production Properties which was conducted for over - [Lobo Regional Study](https://www.corelab.com/casestudies/lobo-regional-study/) - GEOLOGICAL, PETROPHYSICAL, AND ENGINEERING STUDY OF THE LOBO (LOWER WILCOX) SANDSTONES WEBB AND ZAPATA COUNTIES, TEXAS - Available in RAPID Core Laboratories initiated this study to address problems related to exploration, reservoir evaluation, exploitation and completion of Lobo sandstone reservoirs. The objective of the study was to provide participating companies with detailed geological, petrophysical, and - [Louisiana Wilcox](https://www.corelab.com/casestudies/louisiana-wilcox/) - REGIONAL GEOLOGICAL, ENGINEERING, AND PETROPHYSICAL CHARACTERIZATION AND EVALUATION OF THE LOUISIANA WILCOX - Available in RAPID The Louisiana Wilcox Regional Study contains a complete geological, petrophysical, and engineering study from data on drill cuttings and conventional cores on thirty (30) wells. The conventional cores were used to describe, document, and interpret Wilcox sandstone lithology, vertical - [Lower Tuscaloosa Regional Study](https://www.corelab.com/casestudies/lower-tuscaloosa-regional-study/) - REGIONAL GEOLOGIC STUDY AND RESERVOIR EVALUATION OF THE LOWER TUSCALOOSA FORMATION IN SOUTHWEST MISSISSIPPI AND LOUISIANA The Lower Tuscaloosa Regional Study addresses problems related to the exploration, reservoir evaluation, and production of Lower Tuscaloosa sandstone reservoirs. Some of the major difficulties encountered by operators in the trend have been understanding and predicting the type, geometry, - [Smackover Regional Study - MAFLA Area](https://www.corelab.com/casestudies/smackover-regional-study-mafla-area/) - Core Laboratories conducted a study of the Jurassic Smackover Formation in the Mississippi-Alabama-Florida (MAFLA Region). This study completely characterizes Smackover reservoir rocks from a geological and petrophysical evaluation of seventy-two (72) conventionally cored wells. Objectives include: Describe and document Smackover lithologies, textures, sedimentary structures, and interpret depositional environments Delineate rock constituents, cements, and pore types, - [Norphlet Reservoir Study](https://www.corelab.com/casestudies/norphlet-reservoir-study/) - Available in RAPID The Norphlet Reservoir Study is a comprehensive stratigraphic and petrographic study utilizing thirty-six (36) wells that represent 3,800 feet of Norphlet section from onshore and offshore Alabama, eastern Mississippi, and the Florida panhandle. A total of 349 samples were studied in thin section, eighty-five (85) of which were analyzed by scanning electron - [Deep Oligocene Regional Study (S. LA.)](https://www.corelab.com/casestudies/deep-oligocene-regional-study-s-la/) - DEEP OLIGOCENE CORE STUDY OF SOUTHWESTERN LOUISIANA - Available in RAPID Geological and petrophysical evaluations were conducted on conventional cores from thirty-one (31) wells, extending from Jefferson County, Texas, to St. Martin Parish, Louisiana. The entire Oligocene database is evaluated to provide facies relationships, petrographic data, and petrophysical properties characteristic of Oligocene sandstones - irrespective - [Onshore & Coastal Waters South LA Miocene Regional Study](https://www.corelab.com/casestudies/onshore-coastal-waters-south-la-miocene-regional-study/) - REGIONAL CORE STUDY OF THE MIOCENE IN SOUTH LOUISIANA AND COASTAL WATERS - Available in RAPID The reservoir quality of Miocene sandstones is highly variable and dependent on depositional environment and burial diagenesis, with the latter of these two factors being rather pronounced considering the wide range in burial depths (i.e., 2,000 to 23,500 feet). - [Pearsall Group Reservoir Evaluation](https://www.corelab.com/casestudies/pearsall-group-reservoir-evaluation/) - Reservoir Characterization and Production Properties Several oil and gas companies are directing their efforts toward the exploration and exploitation of the Pearsall Group in South Texas. Initial results are very encouraging with reported initial production rates ranging from 450 to 740 BOPD with 4 to 6 MMCFGPD of associated gas. The play appears to be - [Smackover Reservoir Study](https://www.corelab.com/casestudies/smackover-reservoir-study/) - SMACKOVER RESERVOIR STUDY - MAFLA AREA Even though it is a major producer, drilling costs to the Smackover Formation are considerable and success rates are often low. A major reason for the low completion rate of wildcat wells is the complexity of Smackover reservoirs which make porosity predictions difficult. Therefore, a thorough understanding of the - [Texas Wilcox Regional Study and Rock Catalog](https://www.corelab.com/casestudies/texas-wilcox-regional-study-and-rock-catalog/) - REGIONAL GEOLOGICAL, PETROPHYSICAL, AND ENGINEERING STUDY OF THE "DOWNDIP" WILCOX GROUP IN SOUTH TEXAS AND ROCK CATALOG - Available in RAPID Formation evaluation, recognition of pay versus non pay and completion challenges are inherent to this prolific south Texas formation. This project was to designed to address these issues and aid participating companies in their - [Thanksgiving Field Study](https://www.corelab.com/casestudies/thanksgiving-field-study/) - A study of the Lower Tuscaloosa Formation in the Thanksgiving Field, Amite County, Mississippi was conducted consisting of seventeen (17) conventionally cored wells. Detailed core descriptions, interpretation of depositional environments, petrographic and mineralogical analysis and a petrophysical evaluation for each well was used to delineate trends of high reservoir quality and define what controls that - [Vicksburg Regional Study and Rock Catalog](https://www.corelab.com/casestudies/vicksburg-regional-study-and-rock-catalog/) - GEOLOGIC STUDY AND RESERVOIR EVALUATION OF THE VICKSBURG FORMATION, SOUTH TEXAS - Available in RAPID This study was initiated to provide a detailed geological, petrophysical, and engineering characterization and evaluation of Vicksburg sandstones from conventional cores. This project is base on approximately 5,000 feet of core from thirty-nine (39) project wells with cores that span - [Wilcox Reservoir Study](https://www.corelab.com/casestudies/wilcox-reservoir-study/) - RESERVOIR CHARACTERIZATION STUDY OF THE WILCOX FORMATION OF SOUTH TEXAS - Available in RAPID Recent drilling activity in the Wilcox Formation has demonstrated that this prolific horizon continues to offer new exploitation opportunity. Opportunity comes with inherent risks in a formation where "pay" is not obvious on well logs and prediction of potential productivity from - [Yegua Regional Study](https://www.corelab.com/casestudies/yegua-regional-study/) - GEOLOGICAL AND PETROPHYSICAL EVALUATION OF DOWNDIP YEGUA SANDSTONES TEXAS AND LOUISIANA - Available in RAPID The focus of the study is on the geological, petrophysical, engineering and completion aspects of Yegua sandstones. A total of 3,668 feet of conventional core from thirty-four (34) wells were analyzed and evaluated with respect to: Depositional environments Paleontology Reservoir - [Prairie Du Chien Regional Study and Rock Catalog](https://www.corelab.com/casestudies/prairie-du-chien-regional-study-and-rock-catalog/) - The objective of the study is to address problems related to the exploration, reservoir evaluation, and production of PdC sandstone reservoirs in the Lower Peninsula of Michigan. A total of thirty (30) wells with conventional core were analyzed and evaluated. A total of 3,428 feet of PdC conventional core has been geologically described and depositional - [Anadarko Basin Study](https://www.corelab.com/casestudies/anadarko-basin-study/) - CHARACTERIZATION AND EVALUATION OF ROCK MATRIX PROPERTIES FOR MAJOR PRODUCTIVE FORMATIONS (RED FORK, ATOKA, MORROW, SPRINGER, GODDARD) IN THE ANADARKO BASIN, OKLAHOMA AND TEXAS - Available in RAPID Core Laboratories is offering a completed project entitled "Characterization and Evaluation of Rock Matrix Properties for the major Productive Formations (Goddard, Springer, Morrow, Atoka, Red Fork, and - [Granite Wash Study](https://www.corelab.com/casestudies/granite-wash-study/) - GRANITE WASH GEOLOGICAL, PETROPHYSICAL AND COMPLETIONS STUDY FOR IMPROVED FORMATION EVALUATION AND OPTIMAL WELL COMPLETIONS - Available in RAPID The objective of this project is to optimize operators' exploitation of Granite Wash reservoirs in the Texas panhandle area and Oklahoma. Common problems in the trend are: formation evaluation, well completion, stimulation and production aspects of - [Hydrocarbon Potential of the Arbuckle Group Gas and Oil Study](https://www.corelab.com/casestudies/hydrocarbon-potential-of-the-arbuckle-groupgas-and-oil-study/) - Hydrocarbon source rock potential determined from cuttings, cores, and gases from ten (10) wells in the Arkoma basin and source rock evaluation of cuttings and cores from fifteen (15) wells and correlations of seventy-five (75) oils. Gas study - ten (10) wells Source rock evaluation - fifteen (15) wells, seventy-five 75 oils Ask the expert - [Mississippi Lime](https://www.corelab.com/casestudies/mississippi-lime/) - Geological, Petrophysical and Completions StudyImproved Formation Evaluation and Optimal Well Completions The primary productive interval in the section is the Mississippian "Chat", which comprises the upper 50 to 100 feet in some areas. In this interval porosity has developed as a result of subareal erosion creating a complex mixture of rock types that include chert, - [Oklahoma Geochemical Study](https://www.corelab.com/casestudies/oklahoma-geochemical-study/) - This study geochemically characterizes crude oil reservoirs in the Cambro-Ordovician Arbuckle Group of Oklahoma and determines their relationships with younger oils and potential source rocks. Ninety-five (95) crude oils, oil seep, and 1,050 cuttings and cores from forty-one (41) wells in Oklahoma and far north Texas were analyzed using routine geochemical techniques. The oils are - [Woodford-Oklahoma Shale](https://www.corelab.com/casestudies/woodford-oklahoma-shale/) - Reservoir Characterization and Production Properties Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of the liquids maturity window of the Woodford Shale in Oklahoma. This play began in the Cano field area and has recently expanded to the South Central Oklahoma Oil Province (“SCOOP”). The play may also - [Avalon-Wolfcamp Shale Study (Delaware Basin)](https://www.corelab.com/casestudies/avalon-wolfcamp-shale-study-delaware-basin/) - Reservoir Characterization and Production Properties Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of "Tight Oil" from the Wolfcamp, Avalon Shale, and Bone Spring Sandstones in the Delaware Basin (Figure 1). Production is from the Avalon Shale and Wolfcamp sections above the 1st Bone Spring Sands (Figure 2). - [Bone Spring Sandstones Study](https://www.corelab.com/casestudies/bone-spring-sandstones-study/) - GEOLOGICAL AND PETROPHYSICAL EVALUATION OF BONE SPRING SANDSTONES, EDDY AND LEA COUNTIES, NEW MEXICO - Available in RAPID Core Laboratories has conducted a regional study of the Permian, Bone Spring Formation in Eddy and Lea Counties, New Mexico to provide geologic, petrographic and petrophysical data for improved formation evaluation of the Bone Spring sandstones. Included - [Brushy Canyon Sandstones Study](https://www.corelab.com/casestudies/brushy-canyon-sandstones-study/) - EVALUATION OF LOW RESISTIVITY BRUSHY CANYON SANDSTONES, EDDY AND LEA COUNTIES, NEW MEXICO - Available in RAPID The Brushy Canyon sandstones are commonly difficult to petrophysically evaluate in terms of differentiating pay from non-pay zones using standard log evaluation techniques. The sandstones often exhibit low resistivity and low contrast pay and have high calculated water - [Delaware Mountain Group Study](https://www.corelab.com/casestudies/delaware-mountain-group-study/) - REGIONAL GEOLOGIC STUDY RESERVOIR ROCK PROPERTIES OF DELAWARE MOUNTAIN GROUP SANDSTONES, DELAWARE BASIN The Delaware Mountain Group Study was designed to geologically study and evaluate Delaware Mountain Group sediments in the Delaware Basin of west Texas and southeast New Mexico. The objectives of the regional study were to provide participating companies with detailed geological, petrophysical, - [Morrow Regional Study](https://www.corelab.com/casestudies/morrow-regional-study/) - REGIONAL GEOLOGIC STUDY RESERVOIR EVALUATION OF THE MORROW SANDSTONE, DELAWARE BASIN The Morrow Regional Study was designed to provide participating companies with detailed geological, petrophysical and engineering characterization and evaluation of reservoir rock samples from 128 wells with conventional core or cuttings penetrating the Morrow Clastic Section within the Delaware Basin. The results of this - [Sequence Stratigraphy and Petrophysical Study for the Morrow Sandstones in the Delaware Basin](https://www.corelab.com/casestudies/sequence-stratigraphy-and-petrophysical-study-for-the-morrow-sandstones-in-the-delaware-basin/) - This study was designed to address current problems that operators are encountering in the exploration, development, and formation evaluation of these complicated Morrow sandstone reservoirs in Lea and Eddy Counties. The project provides operators with important geological, reservoir rock property data and interpretations gathered from recent drilling activity and incorporates technological advancements that the industry - [Queen Sandstones Study](https://www.corelab.com/casestudies/queen-sandstones-study/) - Queen Sandstones have recently been the target of new drilling programs, especially along the southern margins of the Central Basin Platform. This activity, coupled with continued development of the more established Queen Fields, indicates that the Queen Sandstones deserve the focus of this integrated formation evaluation study. The Queen Sandstones are very fine-grained, arkosic, and - [Tatum Basin Regional Study](https://www.corelab.com/casestudies/tatum-basin-regional-study/) - A regional geologic and petrophysical study of Virgilian (Late Pennsylvanian) and Wolfcampian (early Permian) carbonate rocks within the Tatum Basin of New Mexico was conducted with special emphasis placed on the Bough "A", "B", "C", and "D" zones and the informal Lower Wolfcamp Members of the Cisco and Hueco Formations. The Study area includes the - [Tight Oil Reservoirs of the Midland Basin "Wolfberry", Strawn, AND Mississippian](https://www.corelab.com/casestudies/tight-oil-reservoirs-of-the-midland-basinwolfberry-strawn-and-mississippian/) - Reservoir Characterization and Production Properties Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of "Tight Oil" from the Spraberry, Dean, Wolfcamp, Strawn and deeper Paleozoics in the Midland Basin. Production is co-mingled from these zones following multi-stage, hydraulic fracture stimulation of siltstones, carbonates and organic-rich mudstones spread out - [Wolfcamp Regional Study](https://www.corelab.com/casestudies/wolfcamp-regional-study/) - GEOLOGICAL AND PETROPHYSICAL EVALUATION OF WOLFCAMP SANDSTONES PECOS AND TERRELL COUNTIES, TEXAS The Wolfcamp Sandstones in the Val Verde Basin have recently been the target of new drilling programs, especially in Pecos and Terrell Counties Texas. This activity, coupled with continued development extensions of the more established fields, indicates that the Wolfcamp Sandstones warrant a - [Wolfcamp Reservoir Study](https://www.corelab.com/casestudies/wolfcamp-reservoir-study/) - Available in RAPID Core Laboratories has conducted a comprehensive sedimentological, petrographic, and petrophysical study of Wolfcamp Reservoirs of west Texas. The study area includes Yoakum, Terry, Borden, Scurry, Glasscock, Howard, Upton, Pecos, Ector, Andrews, Gaines, Garza, and Reagan Counties. The objective of the study is to define the interrelationships of depositional environments, diagenesis, and reservoir - [Woodford-Barnett Shale](https://www.corelab.com/casestudies/woodford-barnett-shale/) - Reservoir Characterization and Production PropertiesMidland Basin and Central Basin Platform Currently, numerous oil and gas companies in the Midland Basin are directing their efforts toward the exploration and exploitation of "Tight Oil" from the Wolfcamp and Cline shales. Core Lab has been conducting a highly successful joint industry project evaluating these reservoirs for 39 member - [Codell Sandstone - DJ Basin](https://www.corelab.com/casestudies/codell-sandstone-dj-basin/) - Geological, Petrophysical and Completions Study for Improved Formation Evaluation and Optimal Well Performance The Integrated Reservoir Solutions division of Core Laboratories is offering to interested companies participation in a project designed to optimize operators’ exploitation of the liquids-rich, Codell Sandstone in the DJ Basin. This project is a follow-up to our highly successful Niobrara joint - [Denver Basin I & II](https://www.corelab.com/casestudies/denver-basin-i-ii/) - DB I contains hydrocarbon source/rock potential determined from cuttings and cores from twelve (12) wells and nine (9) oils. DB II contains Geochemical characterization and oil/source correlation using cuttings and cores from fifteen (15) wells and four (4) oils. Ask the expert - [Niobrara Formation Regional Study](https://www.corelab.com/casestudies/niobrara-formation-regional-study/) - Reservoir Characterization and Production Properties Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of the Niobrara Formation in several basins in the Rocky Mountain region. Production is from organic-rich, calcareous mudstones and chalk which locally have a fracture component. This unconventional oil and gas reservoir has proved to - [Paradox Basin Regional Study](https://www.corelab.com/casestudies/paradox-basin-regional-study/) - Historically much of the geological knowledge of the Paradox Basin has been based on petrologic studies conducted in the late 1940's and 50's. Major advances in the understanding of continental tectonism during Paleozoic times have aided in deciphering the buried structural history of the Paradox Basin. Although advances in recent years in both carbonate and - [Powder River Basin Regional Study](https://www.corelab.com/casestudies/powder-river-basin-regional-study/) - The Powder River Basin Regional Study was designed to provide participating companies with detailed geological, petrophysical, and associated engineering characterization and evaluation of Muddy-Newcastle, Minnelusa-Leo, Dakota-Fall River and Frontier-Turner sandstones. The primary objectives for this study are as follows: Describe, document, and interpret sandstone lithology, vertical sequences, and the character of various lithofacies present within - [Powder Basin River Upper Cretaceous Tight Oil Reservoirs](https://www.corelab.com/casestudies/powder-basin-riverupper-cretaceous-tight-oil-reservoirs/) - Geological, Petrophysical and Completions Study For Improved Formation Evaluation and Optimal Well Performance The Integrated Reservoir Solutions division of Core Laboratories is offering to interested companies participation in a project designed to optimize operators’ exploitation of low-permeability, liquids-rich, Upper Cretaceous reservoirs in the Powder River Basin. Initial activity in the basin for unconventional reservoirs focused - [San Juan Basin Regional Study](https://www.corelab.com/casestudies/san-juan-basin-regional-study/) - A REGIONAL GEOLOGIC STUDY OF CARBONIFEROUS SANDSTONE AND CARBONATE INTERVALS IN THE SAN JUAN BASIN, NORTHWESTERN NEW MEXICO, NORTHEASTERN ARIZONA, AND SOUTHWESTERN COLORADO - Available in RAPID This study assesses the potential for reservoir-quality facies within Carboniferous (Mississippian and Pennsylvanian) rocks of the deeper San Juan Basin. The numerous wells drilled on the Four Corners - [San Juan Basin Rock Catalog](https://www.corelab.com/casestudies/san-juan-basin-rock-catalog/) - SAN JUAN BASIN ROCK CATALOG™ - A CATALOG OF GEOLOGICAL AND ENGINEERING PROPERTIES FOR THE MESA VERDE, PICTURED CLIFFS AND DAKOTA FORMATION IN THE SAN JUAN BASIN The project includes measurement, documentation, and interpretation in a catalog format of the geological and petrophysical properties of rock types identified in the Mesa Verde, Pictured Cliffs, and - [Tight Oil Reservoirs Williston Basin](https://www.corelab.com/casestudies/tight-oil-reservoirs-williston-basin/) - Reservoir Characterization and Production Properties Williston Basin operators over the past few years have been targeting the Bakken section especially in the North Dakota area of the play. Numerous cores and well performance data have been collected and analyzed in the area. However, recent activity has been pushing the Bakken Play into northern Montana where - [Williston Basin Study](https://www.corelab.com/casestudies/williston-basin-study/) - Upper Devonian Duperow and Birdbear (NISKU) Reservoirs The Integrated Reservoir Solutions Division of Core Laboratories is offering to interested companies the results of a geological and engineering evaluation of the Upper Devonian Duperow and Birdbear (Nisku) formations of eastern Montana and western North Dakota. Project Objectives Define and document the depositional facies of the stratigraphic - [Shale Reservoirs North America](https://www.corelab.com/casestudies/shale-reservoirs-north-america/) - Reservoir Characterization and Production Properties* - Available in RAPID Understanding the similarities and differences in shales is key to optimized exploitation. Therefore the primary objective of this project is to provide operators with measured geological, petrophysical, geomechanical, geochemical, and production properties of numerous shales in order to improve their formation evaluation and to optimize stimulation - [Fracture Stimulation Optimization for Tight Gas Sands*](https://www.corelab.com/casestudies/fracture-stimulation-optimization-for-tight-gas-sands/) - Available in RAPID Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of tight gas sand reservoirs. These reservoirs have proved to be challenging in terms of reservoir characterization and optimizing fracture stimulation techniques. Many companies do not have key rock property data that are crucial for understanding these - [North Slope Alaska Source Rock Study](https://www.corelab.com/casestudies/north-slope-alaska-source-rock-study/) - Mississippi through Tertiary rocks from the North Slope of Alaska were evaluated for their hydrocarbon source rock potential. Cuttings and core samples from thirty-four (34) wells, which provide both regional and stratigraphic coverage, were utilized in this geochemical study. A final report is provided that integrates the geochemical data into the regional geologic framework of - [San Joaquin Basin Petroleum Potential Study](https://www.corelab.com/casestudies/san-joaquin-basin-petroleum-potential-study/) - The purpose of this regional study was to evaluate the petroleum potential of the San Joaquin basin by analyzing oils and potential source rocks from the study area. A total of fifty-nine (59) oils from thirty-eight (38) fields that represent Pliocene to Cretaceous sediments were analyzed. The oils were characterized and discussed in the "San - [Southern California Oil Study](https://www.corelab.com/casestudies/southern-california-oil-study/) - A total of ninety-eight (98) oils representing fifty (50) fields in the Santa Maria, San Joaquin, Cuyama, Salinas and Ventura Basins including the Santa Barbara Channel area were characterized in the Southern California Oil Study. The main objective was to determine the major factors controlling oil quality and to recommend geologic settings favorable for the - [Stevens Reservoir Study](https://www.corelab.com/casestudies/stevens-reservoir-study/) - The primary purpose of this study was delineate trends of high reservoir quality and define the petrographic controls of reservoir quality. Additional objectives include the identification of pay and non-pay zones of interest. The documentation of diagenetic minerals, their effect on reservoir quality, and their geographic and stratigraphic distribution are also discussed. A total of - [Temblor Regional Study](https://www.corelab.com/casestudies/temblor-regional-study/) - Since 1940 the Oligocene-Miocene Temblor Formation in the central portion of the San Joaquin Valley has yielded more that one billion barrels of oil and trillions of cubic feet of gas from the general study area. With renewed interest in the Temblor sands as a petroleum producer this study provides a base of information with - [Duvernay Regional Study](https://www.corelab.com/casestudies/duvernay-regional-study/) - Reservoir Characterization and Production Properties Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of the Duvernay Shale following extensive lease sales in 2010. Many companies are beginning pilot programs to acquire core, logs, and conduct preliminary stimulation operations. Companies either do not have or have limited rock property - [Montney Phase II – Liquids Play A Regional Study](https://www.corelab.com/casestudies/montney-phase-ii-liquids-playa-regional-study/) - Reservoir Characterization and Production Properties The Integrated Reservoir Solutions Division of Core Laboratories is proposing to interested companies participation in a multi-company, geo-engineering study of the Montney in the liquids area(s) as a Phase II project. This Phase II project consists of the characterization and evaluation of numerous new and legacy conventional cores and rotary - [Spirit River](https://www.corelab.com/casestudies/spirit-river/) - Extention of the Wilrich Reconnaissance and Regional Study After a successful joint industry project (JIP) focused on the Wilrich Member for the Spirit River Formation, the Integrated Reservoir Solutions Division of Core Laboratories has decided to extend this current study to include the entire Spirit River Formation. The Spirit River Formation is the second top - [Central Atlantic Margins – West Africa (Senegal, The Gambia, Guinea Bissau) – Phase I](https://www.corelab.com/casestudies/central-atlantic-margins-west-africasenegal-the-gambia-guinea-bissau-phase-i/) - Core Laboratories is pleased to announce, in partnership with PETROSEN, AGC AND PETROGUIN, a new rock based geological and petrophysical study/database for 2014 - Central Atlantic Margins – West Africa (Senegal, The Gambia, Guinea Bissau) – Phase I, with a 40+ well coverage over Senegal, AGC and Guinea Bissau. Ask the expert - [Côte d'Ivoire: Regional Reservoirs and Seals](https://www.corelab.com/casestudies/cote-divoire-regional-reservoirs-and-seals/) - Core Laboratories is pleased to announce the first phase of a series of rock based, geological studies across the West African Transform Basins, providing dataset generation and detailed evaluation of reservoir and seal rocks across the region; Phase I – Cote d'Ivoire was initiated end 2009 The study will be undertaken in partnership with Petroci - [Equatorial Atlantic, West Africa: Transform Basins of Côte d'Ivoire (Phase III)](https://www.corelab.com/casestudies/equatorial-atlantic-west-africatransform-basins-of-cote-divoire-phase-iii/) - A regional rock-based evaluation of reservoir, source and seal rock facies. Petroci and Core Laboratories are pleased to present a comprehensive geological evaluation of well data from the Equatorial Atlantic Cote d’Ivoire Transform Margin. Three phases of project work across the margin utilise rock material and well log data from a total of 92 wells - [Equatorial Atlantic, West Africa: Transform Basins of Ghana and Benin](https://www.corelab.com/casestudies/equatorial-atlantic-west-africatransform-basins-of-ghana-and-benin/) - A regional rock-based evaluation of reservoir, source and seal rock facies. Presented by Core Laboratories and supported by Petroleum Commission, Ghana and Société Béninoise des Hydrocarbures, Benin. This rock-based evaluation of reservoirs and seal rock facies in the offshore basins of Ghana and Benin extends a comprehensive study completed in the transform margin in offshore - [Equatorial Atlantic, West Africa: Transform Basins of Liberia](https://www.corelab.com/casestudies/equatorial-atlantic-west-africa-transform-basins-of-liberia/) - The National Oil Company of Liberia (NOCAL) and Core Laboratories are pleased to present this Joint Industry Project, which will provide a comprehensive and up-to-date geological evaluation of well data from the Equatorial Atlantic Transform Basins of Liberia. The fully integrated project database, incorporating stratigraphy, reservoir description and regional geology, will utilize rock material and - [Gabon / North Congo Reservoirs](https://www.corelab.com/casestudies/gabon-north-congo-reservoirs/) - In response to increased activity in West Africa by both Majors and Independents, Core Laboratories is pleased to announce a significant update and expansion of its Gabon and Northern Congo database. In 1994 Core laboratories presented a predominantly pre-salt reservoir study of the area containing twenty-four (24) cored wells (c.900 meters). The expanded study presented - [East African Reservoirs and Seals: Phase II, Kenya](https://www.corelab.com/casestudies/east-african-reservoirs-and-seals-phase-ii-kenya/) - Core Laboratories is pleased to announce a significant series of rock based, geological studies in East Africa, providing dataset generation and detailed evaluation of reservoir and seal rocks across the region. Phase I – Tanzania was completed in July 2009.Phase II– Kenya, is presented in this proposal for your consideration. National Oil, Kenya will provide - [Libya Reservoirs - Phase I, Onshore Basins](https://www.corelab.com/casestudies/libya-reservoirs-phase-i-onshore-basins/) - Reservoir characterization data pertaining to reservoirs of fields and basins of Libya is critical to many companies' evaluation of opportunities in Libya. This data is generally not available to companies other than NOC. With much of the archived data of 1960's and 70's vintage; a new consistent and compatible dataset, and evaluation of that dataset - [Libya Reservoirs - Phase II, Offshore Basins](https://www.corelab.com/casestudies/libya-reservoirs-phase-ii-offshore-basins/) - Core Laboratories and Petroleum Research Center present the second phase of the Regional Reservoir Study of Libya - the Offshore Basins. We have obtained approval to describe, sample and analyze cores and cuttings samples from approximately thirty-three (33) wells from producing fields and exploration wells in the study area. All the major reservoir formations will - [Niger Delta Geochemistry](https://www.corelab.com/casestudies/niger-delta-geochemistry/) - Core Laboratories has performed a non-exclusive oil and source rock study of the regional petroleum potential of the Niger Delta, Nigeria. This study of the Niger Delta involves detailed geochemical analysis and interpretation of 112 oils from the offshore and onshore Niger Delta, and offshore Cameroon in the Rio Del Rey area. A comprehensive analytical - [Niger Delta Reservoirs](https://www.corelab.com/casestudies/niger-delta-reservoirs/) - PHASE I : SEDIMENTOLOGY / PHASE II : PETROPHYSICS This study examines the Tertiary clastic sequence from the Niger Delta Basin containing sediments generally described as an upward and updip (south-to-north) transition from marine deep water and pro-delta sediments (Akata Formation), through alternating sand/shale paralic deposits (Agbada Formation), to continental deposits (Benin Formation) [Ejedawe, et - [Regional Reservoir and Seal Study Mozambique Basins](https://www.corelab.com/casestudies/regional-reservoir-and-seal-studymozambique-basins/) - Core Laboratories is pleased to announce that we have reached an Agreement with INP to jointly undertake a Regional Reservoir and Seal study of the basins of Mozambique. This study will be a significant new addition to our series of rock based geological studies in East Africa, which will provide new dataset generation and a detailed evaluation of reservoir, - [Reservoirs and Seals, Onshore and Offshore Basins of Gabon](https://www.corelab.com/casestudies/reservoirs-and-seals-onshore-and-offshore-basins-of-gabon/) - Core Laboratories, under authorization of the DGH, Gabon (Director General Hydrocarbons), are pleased to present a comprehensive and fully integrated multi-disciplinary study of the Reservoirs and Seals, Onshore and Offshore Gabon. The project geological dataset will incorporate stratigraphy, geochemistry, reservoir geology and seal rock analysis based on core, cuttings, SWC, well log data and fluid - [Regional Rock-based Evaluation of Pre-Salt Reservoirs Onshore and Offshore Angola](https://www.corelab.com/casestudies/regional-rock-based-evaluation-of-pre-salt-reservoirsonshore-and-offshore-angola/) - Analysis of Clastic and Carbonate Reservoirs of the Lower Congo, Kwanza and Benguela Basins Presented by Core Laboratories and supported by Sonangol This rock-based evaluation of reservoir facies in the onshore and offshore basins of Angola extends a comprehensive study completed in the southern Atlantic Margin in offshore Namibia and South Africa, adding to Core - [Petroleum Geology of the Pre Salt of the South Atlantic Margins Phase I - West Africa](https://www.corelab.com/casestudies/petroleum-geology-of-the-pre-salt-of-the-south-atlantic-margins-phase-i-west-africa/) - Core Laboratories has now built up extensive expertise in the regional petroleum geology of both the Brazilian and West African Atlantic Margin Basins. Our recent geological studies of nine (9) Brazilian basins (Core Laboratories non-proprietary studies, 2001 - 2003) have established an integrated geological model for the shelfal and deepwater areas of the eastern Brazilian - [Pre-Salt of the South Atlantic Margin Phase III Pre Salt Carbonates, West Africa](https://www.corelab.com/casestudies/pre-salt-of-the-south-atlantic-margin-phase-iiipre-salt-carbonates-west-africa/) - Reservoir Description & Regional Geology of Neocomian to Aptian Carbonates and Contemporaneous Non Carbonate Facies The prospectivity of the South Atlantic Margin has experienced a major resurgence in recent years with the discovery of giant oil fields in Pre-Salt carbonate facies of Brazil's Santos, Campos and Espirito Santo Basins and more recently in South Angola - [East Africa - Phase I - Reservoirs and Seals Tanzania](https://www.corelab.com/casestudies/east-africa-phase-i-reservoirs-and-seals-tanzania/) - Core Laboratories is pleased to announce a significant series of rock based, geological studies in East Africa, providing dataset generation and detailed evaluation of reservoir, source and seal rocks across the region. Phase I – Tanzania is presented in this proposal for your consideration. Tanzania Petroleum Development Corporation (TPDC)) will provide access to national archives - [West Africa Geochemistry](https://www.corelab.com/casestudies/west-africa-geochemistry/) - Drilling activity in the Aptian Salt Basins of equatorial West Africa has grown substantially during the past decade. Interest and activity have been encouraged by a series of significant oil discoveries in both the onshore and offshore. To help evaluate exploration opportunities Core Laboratories has developed a comprehensive geochemical database for both crude oils and - [Yemen Rock Catalog](https://www.corelab.com/casestudies/yemen-rock-catalog/) - A CATALOG OF GEOLOGICAL AND ENGINEERING PROPERTIES FOR SANDSTONES AND CARBONATES REPUBLIC OF YEMEN Core Laboratories completed a project to measure, document and interpret, in a catalog format, an extensive array of geological and petrophysical properties for Cretaceous, Jurassic and Paleozoic reservoir rock types in the Republic of Yemen. The analyses was performed on conventional - [Atlantic Canada Reservoirs and Seals – Newfoundland, Labrador and Nova Scotia](https://www.corelab.com/casestudies/atlantic-canada-reservoirs-and-seals-newfoundland-labrador-and-nova-scotia/) - Following on from Core Laboratories’ regional evaluation of the Porcupine Basin, Ireland, and numerous regional studies across the South and Central Atlantic Margins, this study utilises geological datasets from key wells offshore Nova Scotia, Newfoundland and Labrador. The study provides detailed reservoir description and regional geological evaluation of all potential reservoir systems on the margin, - [Atlantic Ireland Reservoirs & Seals](https://www.corelab.com/casestudies/atlantic-ireland-reservoirs-seals/) - Phase 1: Porcupine Basin A non-proprietary regional, rock-based study which provides a fully integrated digital database incorporating legacy and new geological datasets. Key highlights of the study available now include: New digital description, digital photography and interpretation of all Porcupine Basin cores, incorporating core analysis data and revised/updated facies interpretations, High resolution digital sedimentary logs - [Atlantic Ireland Phase II – Fastnet & Celtic Sea Basins](https://www.corelab.com/casestudies/atlantic-ireland-phase-ii-fastnet-celtic-sea-basins/) - As a follow-up to our recent North Atlantic regional geology studies offshore Ireland (Porcupine Basin, Offshore Ireland, 2015) and offshore eastern Canada (Nova Scotia, Newfoundland and Labrador, 2016), Core Laboratories is pleased to present the Atlantic Ireland Phase II study. This project extends our geological database into the Goban Spur, Fastnet and Celtic Sea Basins, - [Bangladesh Petroleum Geology](https://www.corelab.com/casestudies/bangladesh-petroleum-geology/) - BAPEX in association with Core Laboratories has completed A Regional Petroleum Geology and Hydrocarbon Potential Study of Bangladesh (on and offshore). A database of thirty (30) wells and approximately 10,000 line km of seismic was provided by PETROBANGLA for study purposes. The database includes seismic, tapes and paper prints of wireline logs; laboratory and final - [Cambodia/OCA Petroleum Geology](https://www.corelab.com/casestudies/cambodia-oca-petroleum-geology/) - The study, encompassing the Khmer Trough/Shelf and the Overlapping Zone, has well control from nine wells in Cambodia, and associated seismic in both Cambodian waters and the Overlapping Zone, together with four wells bordering the overlapping zone in Thai waters. This study is designed to complement Core Laboratories' 1995-1999 study of the Gulf of Thailand, - [Petroleum Geology of the East China Sea](https://www.corelab.com/casestudies/petroleum-geology-of-the-east-china-sea/) - China Offshore Oil Donghai Corporation (CODHC) in association with Core Laboratories have undertaken a Petroleum Geology and Hydrocarbon Potential Study of the Xihu Trough, East China Sea, PRC. A database of 3,000 line km of seismic (1350 km acquired by CODHC in April 1993) and four (4) wells, together with regional stratigraphic, tectonic and geological - [Foreland Basins of Eastern Indonesia](https://www.corelab.com/casestudies/foreland-basins-of-eastern-indonesia/) - The main technical objectives of this study are to provide a geological model and detailed economic assessment of the Foreland Basins of Eastern Indonesia. The geological model will provide an improved basis for paleogeographic, structural, and hydrocarbon evaluation, and functioning of petroleum systems. This will be achieved through the following approach: Construct a basin-wide lithostratigraphic - [East Natuna, Indonesia](https://www.corelab.com/casestudies/east-natuna-indonesia/) - The main technical objective of the study is to generate a geological model for the area. The geological model provides an improved basis for paleogeographic, structural, and hydrocarbon evaluation, and functioning of petroleum systems. A comprehensive database has been provided by PERTAMINA together with open file data. In summary twenty (20) wells, and associated seismic - [Gulf of Thailand Petroleum Geology](https://www.corelab.com/casestudies/gulf-of-thailand-petroleum-geology/) - Core Laboratories completed "A Regional Petroleum Geology and Hydrocarbon Potential Study of the Gulf of Thailand" in September 1995. This study has been fully updated with eight (8) additional wells. A browser edition of the report is also available. A database of forty-six (46) wells and over 9,000 line km of seismic has been assembled - [Indonesia Coals](https://www.corelab.com/casestudies/indonesia-coals/) - The study of the stratigraphic occurrence and hydrocarbon potential of coals in Indonesia is the first database of its kind and quality to become available as an exploration tool in Indonesia. The quantity of samples (over 500) incorporated in the study allows a depth of interpretation previously unparalleled. The fundamental question of whether coals can - [Regional Evaluations of Gas Shales, Indonesia](https://www.corelab.com/casestudies/regional-evaluations-of-gas-shales-indonesia/) - Core Laboratories is expanding our industry-leading study of Shales to Indonesia with the approval and support of MIGAS. This project will consist of the characterization and evaluation of numerous conventional cores, rotary sidewall cores, and drill cutting samples taken from multiple wells targeting potentially productive shale formations from the Indonesian archipelago. Specifically, these prospective shale - [Irian Jaya & Papua New Guinea](https://www.corelab.com/casestudies/irian-jaya-papua-new-guinea/) - The main technical objectives of this study are to provide a geological model and detailed economic assessment of the Foreland Basins of Irian Jaya and Papua New Guinea. The geological model will provide an improved basis for paleogeographic, structural, and hydrocarbon evaluation, and functioning of petroleum systems. This will be achieved through the following approach: - [Pearl River Mouth Basin](https://www.corelab.com/casestudies/pearl-river-mouth-basin/) - The Pearl River Mouth Basin, a proven hydrocarbon province has been the subject of renewed upstream interest. The majority of this interest has centered upon the Northern Depressions of the Pearl River Mouth Basin. To facilitate this new study COHNE has provided a substantial database of fifteen (15) wells and c. 10,000 km of seismic, - [Sakhalin Island Hydrocarbon Source Potential of Miocene and Oligocene Siliceous Rocks](https://www.corelab.com/casestudies/sakhalin-island-hydrocarbon-source-potential-of-miocene-and-oligocene-siliceous-rocks/) - Commonwealth of Independent States In 1993 Core Laboratories completed a regional geochemical study of mostly Miocene clastic source rocks in the Sakhalin area. Oil companies participating in this first study requested that Core Lab develop a similar study which primarily focuses on Oligocene siliceous rocks in the same area. The Oligocene Pilengsk, a siliceous shale, - [Sakhalin Reservoir](https://www.corelab.com/casestudies/sakhalin-reservoir/) - NORTHERN SAKHALIN OIL/SOURCE ROCK RELATIONSHIPS The study was undertaken to provide a uniform and comprehensive geochemical database from which to correlate oils and source rocks. A total of thirty-six (36) crude oils from nineteen (19) oil fields, and eighty-eight (88) source rock samples from twenty-one (21) locations were collected. Crude oil samples were selected to - [Tarakan Basin Sequence Stratigraphy / Geochemistry](https://www.corelab.com/casestudies/tarakan-basin-sequence-stratigraphy-geochemistry/) - Core Laboratories has completed a sequence stratigraphic and regional geochemical study of the Tarakan Basin. Consistent problems have plagued operators in the Tarakan Basin, namely poor sequence and seismic control, extensive reworking of sediments, poor stratigraphic controls, lack of closures, young migration and lack of competent seals. The main aim of the study was to - [Timor Gap / Bonaparte Basin](https://www.corelab.com/casestudies/timor-gap-bonaparte-basin/) - In response to the 1990 gazettal of "ZOCA" blocks by the Australian and Indonesian Governments, Core Laboratories completed a Petroleum Geology and Hydrocarbon Potential Study of the Timor Gap and Bonaparte Basin. The study encompassed all elements of a "Petroleum System" with a database of over fourteen (14) analyzed wells and over 15,000 km of - [Reservoirs and Seals of the Cuu Long, Nam Con Son and Malay Thu Chu basins, Vietnam](https://www.corelab.com/casestudies/reservoirs-and-seals-of-the-cuu-long-nam-con-son-and-malay-thu-chu-basins-vietnam/) - Vietnam Petroleum Institute and Core Laboratories with the approval of PetroVietnam are pleased to present this non-exclusive study for reservoirs and seals of the Cuu Long, Nam Con Son and Malay Tho Chu basins in Vietnam. Vietnam's southern basins have long provided technical and financial reward with Oil and Gas plays in the three basins. - [West Siberia Reservoir Rock Catalog](https://www.corelab.com/casestudies/west-siberia-reservoir-rock-catalog/) - Commonwealth of Independent States A total of 500 core plugs from fifteen (15) reservoir units in nine (9) oil fields in the southern part of western Siberia were selected to provide stratigraphic and regional coverage and analyzed to provide a database of petrophysical, petrographic, and mineralogical characteristics of major Jurassic and Cretaceous producing reservoirs. The - [Atlantic Argentina Reservoirs and Seals](https://www.corelab.com/casestudies/atlantic-argentina-reservoirs-and-seals/) - Core Laboratories, in partnership with LCV, are pleased to present a regional rock-based evaluation of the reservoir, source and seal rock facies of Argentina, based on approximately 65 wells across the offshore regions of five basins: the Colorado Basin, San Jorge Gulf, San Julian Basin, Austral Basin and Malvinas Basin. The study will provide a - [Bolivia Sub-Andean Belt & Boomerang Hills](https://www.corelab.com/casestudies/bolivia-sub-andean-belt-boomerang-hills/) - The Surubi discovery in the Mamore block and numerous oil seeps throughout the Sub-Andean region have encouraged examination of the Sub-Andean zone. The number, quality and location of effective petroleum source rocks in the Bolivian Sub-Andean zone has important exploration applications. The purpose of this study is to provide information on oil/source relationships from which - [Brazil - Central Offshore Basins](https://www.corelab.com/casestudies/brazil-central-offshore-basins/) - The Central (Espirito-Santo to Sergipe-Alagoas) offshore basins of Brazil have been subject of much speculation by the industry as a result of recent license rounds. Although seismic coverage is now extensive, well data is less available. Core Laboratories and Fundacao CCMN (Federal University of Rio de Janeiro) are pleased to present the generation of an - [Brazil - Cretaceous Carbonates of S.E. Margin](https://www.corelab.com/casestudies/brazil-cretaceous-carbonates-of-s-e-margin/) - The recent hydrocarbon discovery by Petrobras in Block 500 of the Santos Basin, within an interval interpreted to be highly porous, possibly fractured carbonates, has rekindled international interest within the carbonate plays along the Brazilian Margin, particularly within the region from the Santos Basin northward through to the northern Espirito Santo Basin. Further discoveries in - [Brazil - Deepwater Campos Basin](https://www.corelab.com/casestudies/brazil-deepwater-campos-basin/) - Available in RAPID Reservoir characterization data pertaining to the deepwater reservoirs of the Campos Basin is critical to many companies' evaluation program in Brazil. This data is generally not available to companies other than Petrobras. Restrictions governing the sampling of core have prevented such a database being generated on an individual basis or indeed basin-wide. - [Central Atlantic Margins – Suriname (Phase I) and Guyana (Phase II)](https://www.corelab.com/casestudies/central-atlantic-margins-suriname-phase-i-and-guyana-phase-ii/) - n partnership with STAATSOLIE and GUYANA GEOLOGY AND MINES COMMISSION, 2016 saw the creation of a rock-based geological and petrophysical study/database incorporating 42 wells across the Central Atlantic Margin. The study was presented in two phases: Phase I - Suriname Reservoirs & Seals; Phase II - Guyana Reservoirs & Seals. The project provides a comprehensive - [North East Basins, Brazil - Reservoirs and Seals](https://www.corelab.com/casestudies/north-east-basins-brazil-reservoirs-and-seals/) - Sergipe, Alagoas, Camamu, Almada and Jequitinhonha Basins Core Laboratories is pleased to present a regional geological evaluation of reservoirs, source rock and seal horizons from the North Eastern Offshore Basins of Brazil, encompassing the Sergipe, Alagoas, Camamu, Almada and Jequitinhonha basins. The study utilized well and rock-based data from 84 offshore wells, including core, cuttings, - [Pre-Salt Brazil – Santos and Campos Basins](https://www.corelab.com/casestudies/pre-salt-brazil-santos-and-campos-basins/) - Core Laboratories is pleased to present a regional rock-based evaluation of the Pre-Salt reservoirs of the Santos and Campos Basins, based on core, cuttings and well log data from approximately 70 representative wells. The study will provide a comprehensive evaluation of the extent and quality of all reservoir intervals within a correlative stratigraphic framework. Core - [Transform Margins : Reservoirs and Seals - The Equatorial Basins of Brasil](https://www.corelab.com/casestudies/transform-margins-reservoirs-and-seals-the-equatorial-basins-of-brasil/) - Core Laboratories is pleased to announce an all-new integrated geological sciences project (stratigraphy, geochemistry, reservoir geology and petrophysics) from c.60 wells in the Brazil Equatorial offshore basins. The study will be based on a suite of ditch cuttings, cores and fluids from these wells. The study has the full approval (under Ordinance 289) of ANP. The Equatorial - [Transform Margins - Reservoirs and Seals: The Equatorial Basins of Brasil - 2015 Extension](https://www.corelab.com/casestudies/transform-margins-reservoirs-and-seals-the-equatorial-basins-of-brasil-2015-extension/) - Core Laboratories is pleased to present in this proposal the generation of an all-new integrated geological sciences data set (stratigraphy, geochemistry, reservoir geology and petrophysics) from c.15 wells in the Brazil Equatorial offshore basins, drilled since 2010. The study will be based on a suite of ditch cuttings, cores and fluids from these wells. The study - [Brazil - Santos Basin](https://www.corelab.com/casestudies/brazil-santos-basin/) - Available in RAPID The Santos Basin has been heavily featured in all ANP License Rounds to date. Core Laboratories is pleased to present in this study, the generation of an all-new geoscience dataset (biostratigraphy, geochemistry, reservoir geology and petrophysics) from thirty-one (31) wells. The study was initiated in January 2000 and completed in February 2001 - [Colombia-Caballos Formation Study](https://www.corelab.com/casestudies/colombia-caballos-formation-study/) - The Caballos Formation of Aptian-Albian age is an important reservoir in the Upper Magdalena Basin of Colombia. It has been studied at numerous outcrop localities along the basin margins. These outcrop studies which show considerable variation in Caballos depositional facies and reservoir properties need to be correlated with subsurface core data to develop a regional - [Northern Argentina](https://www.corelab.com/casestudies/northern-argentina/) - In response to industry-wide interest and support, Core Laboratories has prepared a non-exclusive study of the regional petroleum geochemistry of the Noroeste and Chacoparanense Basins in northern Argentina. The principal objectives of this study were as follows: Noroeste Basin (Northwest) Determine the number, character, and distribution of genetically distinct oil families Identify and map the - [Peru: Regional Reservoirs and Seals](https://www.corelab.com/casestudies/peru-regional-reservoirs-and-seals/) - The basins of Peru have long provided technical and financial reward with Oil and Gas plays in the major basins both on and offshore. However current players in the region are looking at a number of alternative plays. Many such plays involve complex reservoir systems and require accurate data to input into basin modeling programs. - [Petroleum Geology of the Pre Salt of the South Atlantic Margins Phase II - Brazil](https://www.corelab.com/casestudies/petroleum-geology-of-the-pre-salt-of-the-south-atlantic-margins-phase-ii-brazil/) - Core Laboratories has now built up extensive expertise in the regional petroleum geology of both the Brazilian and West African Atlantic Margin Basins. Our recent geological studies of nine (9) Brazilian basins (Core Laboratories non-proprietary studies, 2001 - 2003) have established an integrated geological model for the shelfal and deepwater areas of the eastern Brazilian - [Sub-Andean Basins Regional Petroleum Geochemistry of Crude Oils](https://www.corelab.com/casestudies/sub-andean-basins-regional-petroleum-geochemistry-of-crude-oils/) - The sedimentary basins along the eastern face of the Andean range commonly referred to as Sub-Andean Basins, have long been recognized for their excellent source rock quality and oil production. From western Venezuela to southern Argentina there are no fewer than fifteen (15) separate oil productive basins that lie directly east of the Andes. Although - [Relative Permeability Database](https://www.corelab.com/casestudies/relative-permeability-database/) - Relative permeability data are a key component in reservoir characterization, understanding reservoir behavior, and predicting recovery factors in EOR projects such as water floods. Relative permeability data are a critical input parameter for reservoir simulators. The data are very expensive to acquire and in many cases are not readily available, such as in: 1) old - [SCOOP-STACK Oklahoma](https://www.corelab.com/casestudies/scoop-stack-oklahoma/) - A Regional Geo-engineering and Geophysical Studyof the SCOOP-STACK Oklahoma The Integrated Reservoir Solutions Division of Core Laboratories and TGS are proposing to interested companies participation in a multi-company, geo-engineering study of the SCOOP-STACK Oklahoma which compliments our ongoing study of the underlying Woodford Shale in Oklahoma. Construct database consisting of geological, petrophysical, geomechanical, and geochemical - [Haynesville Core Study](https://www.corelab.com/casestudies/haynesville-core-study/) - STUDY OF THE NORTH FRISCO CITY AND NORTH ROME FIELDS - HAYNESVILLE CORE STUDY The Haynesville core study focuses is on two fields. The Frisco City Member of the Jurassic Haynesville Formation at North Frisco City Field and North Rome Field in Alabama. Project components include detailed sedimentology on 680 feet of core from eight - [Absaroka Basin Northwestern Wyoming](https://www.corelab.com/casestudies/absaroka-basin-northwestern-wyoming/) - Hydrocarbon source rock potential determined from cuttings from fifteen (15) wells and oils from fifteen (15) fields. Ask the expert - [Global Tight Gas Sands Study](https://www.corelab.com/casestudies/global-tight-gas-sands-study/) - Currently, numerous oil and gas companies are extending and even beginning their efforts toward the exploration and exploitation of tight gas sand reservoirs outside of the United States and Canada. These reservoirs have proved to be challenging in terms of reservoir characterization and optimizing fracture stimulation techniques. Many companies do not have key rock property - [Deep Frio Regional Study](https://www.corelab.com/casestudies/deep-frio-regional-study/) - RESERVOIR EVALUATION OF DEEP FRIO SANDSTONES ALONG THE SOUTHEAST TEXAS COAST - Available in RAPID Core Laboratories conducted a geological and petrophysical study of Deep Frio sandstones on the southeast Texas coast. The study is directed at analyzing conventional cores from multiple wells located primarily in Brazoria and Galveston counties. The technical objective of this - [Missourian Tight Oil Reservoirs – Anadarko Basin](https://www.corelab.com/casestudies/missourian-tight-oil-reservoirs-anadarko-basin/) - Geological, Petrophysical and Completions Study For Improved Formation Evaluation and Optimal Well Performance The Integrated Reservoir Solutions division of Core Laboratories is offering to interested companies participation in a project designed to optimize operators' exploitation of liquids-rich, Missourian reservoirs in the Texas Panhandle Area and Oklahoma. This project is a follow-up to our highly successful - [Smackover Study (Ark-La State Line)](https://www.corelab.com/casestudies/smackover-ark-la-state-line/) - The Arkansas-Louisiana State Line Trend Smackover Core Study provides a synthesis of the observations and conclusion drawn from analyses of 1,546 feet of conventional core from twenty (20) wells. The objectives of this study are to completely characterize geologically and petrophysically Smackover reservoir rocks from conventional cores. Methodology included: Describe and sedimentologically analyze the cored - [Deepwater Asia Study*](https://www.corelab.com/casestudies/deepwater-asia-study/) - Available in RAPID Data pertaining to the deepwater reservoirs is critical to many companies' evaluation of new opportunities in the Asia Pacific Region. This data is generally not available to companies other than Operators / Partners in specific blocks and to the National Oil Institutions. Restrictions governing the sampling of present deepwater wells have prevented - [Antler Basin Source Rock Study](https://www.corelab.com/casestudies/antler-basin-source-rock-study/) - Mississippian rocks from the Antler Basin in the eastern Great Basin of Nevada and Utah were evaluated for their hydrocarbon source rock potential. A total of 306 outcrop samples from forty-three (43) sections and 191 subsurface samples from fifteen (15) wells were utilized in this study. The objective of the study was to assess the - [Wilrich Member](https://www.corelab.com/casestudies/wilrich-member/) - Reconnaissance and Regional StudyReservoir Characterization, Completion and Production Properties Numerous oil and gas companies in the Western Canadian Sedimentary Basin are directing their efforts toward the exploration and exploitation of gas and liquids-rich gas from the sandstone and siltstone of the Wilrich Member in the Lower Cretaceous Spirit River Formation. The Wilrich play ranks as - [Montney Shale Regional Study](https://www.corelab.com/casestudies/montney-shale-regional-study/) - Reservoir Characterization and Production Properties Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of the Triassic Montney Formation in northeastern British Columbia and western Alberta. Major facies include fine-grained shoreface sandstones, shelf siltstones and shales, fine-grained turbidites and organic-rich phosphatic shale. This project focuses on the evaluation of - [Worldwide Rock Catalog™ Phase 2](https://www.corelab.com/casestudies/worldwide-rock-catalog-phase-2/) - Expanding the Catalog of Geological and Engineering Properties for Sandstones and Carbonates Core Laboratories is pleased to offer membership in a Joint Industry Project designed to accelerate and validated emerging artificial intelligence technologies aimed at characterizing and evaluating the geological, petrophysical, and engineering properties of sandstone and carbonate rock types as well as expanding the - [Cotton Valley Regional Study](https://www.corelab.com/casestudies/cotton-valley-regional-study/) - GEOLOGICAL AND PETROPHYSICAL PROPERTIES OF COTTON VALLEY SANDSTONES IN EAST TEXAS AND NORTH LOUISIANA - Available in RAPID Core Laboratories completed a study of Cotton Valley Sandstones in east Texas and north Louisiana to identify and provide data on the spectrum of Cotton Valley reservoir rock types to be applied in the discrimination of commercially - [South Texas Frio Sandstones Regional Study](https://www.corelab.com/casestudies/south-texas-frio-sandstones-regional-study/) - AVAILABLE IN RAPID This project was designed to optimize operators' exploitation of down-dip, geopressured, Frio gas reservoirs in south Texas. Operators in this trend indicate that are having problems in the formation evaluation, well completion, stimulation and production aspects of down-dip Frio gas wells. These problems include but are not limited to the following: Recognition - [Eagle Ford Shale Evaluation](https://www.corelab.com/casestudies/eagle-ford-shale-evaluation/) - Reservoir Characterization and Production Properties Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of the Eagle Ford Shale in South Texas. This gas shale reservoir has proved to be challenging in terms of reservoir characterization, predicting producibility potential, estimating ultimate recovery, and optimizing fracture stimulation techniques. Many companies - [Eaglebine - Regional Study](https://www.corelab.com/casestudies/eaglebine-regional-study/) - Reservoir Characterization and Production Properties Currently, numerous oil and gas companies are directing their efforts toward the exploration and exploitation of the "Eaglebine" section in East Texas. The "Eaglebine" section is the interval from the base of the Austin Chalk to the top of the Buda limestone. It consists of the Woodbine sandstones and the - [csGTX-Span_1_Zonal_Isolation](https://www.corelab.com/casestudies/csgtx-span_1_zonal_isolation/) - [csX-Span_8_Patch_Replacement](https://www.corelab.com/casestudies/csx-span_8_patch_replacement/) - [csX-Span_6_parted_casing](https://www.corelab.com/casestudies/csx-span_6_parted_casing/) - [csX-Span_5_CNR_StarBurst_Whipstock](https://www.corelab.com/casestudies/csx-span_5_cnr_starburst_whipstock/) - [csX-Span_4_Corroded_Casing](https://www.corelab.com/casestudies/csx-span_4_corroded_casing/) - [csX-Span_3_Digital_Slick_Deployed](https://www.corelab.com/casestudies/csx-span_3_digital_slick_deployed/) - [csX-Span_2_zonal_Isolation](https://www.corelab.com/casestudies/csx-span_2_zonal_isolation/) - [csX-Span_1_water_shutoff](https://www.corelab.com/casestudies/csx-span_1_water_shutoff/) - [csSSX-Span_3_SSSV](https://www.corelab.com/casestudies/csssx-span_3_sssv/) - [csSSX-Span_3_Screen_Suspension](https://www.corelab.com/casestudies/csssx-span_3_screen_suspension/) - [csSSX-Span_1_Syphon_string](https://www.corelab.com/casestudies/csssx-span_1_syphon_string/) - [csSTX-Span_prepacked_screens](https://www.corelab.com/casestudies/csstx-span_prepacked_screens/) - [csKodiak](https://www.corelab.com/casestudies/cskodiak/) - [PACKSCAN® Confirms Competent Annular Pack](https://www.corelab.com/casestudies/packscan-confirms-competent-annular-pack/) - [Integrating Production Log](https://www.corelab.com/casestudies/integrating-production-log/) - [Interwell Tracers Add Low-Cost Reserves](https://www.corelab.com/casestudies/interwell-tracers-add-low-cost-reserves/) - [How to Apply Acidizing Tracers](https://www.corelab.com/casestudies/how-to-apply-acidizing-tracers/) - [Mid-Continent Fracturing Treatment](https://www.corelab.com/casestudies/mid-continent-fracturing-treatment/) - [CSace](https://www.corelab.com/casestudies/csace/) - [csPAC7inNSSC](https://www.corelab.com/casestudies/cspac7innssc/) ## Catalogue Items - [Complete Crush™ Brochure](https://www.corelab.com/catalogueitems/complete-crush-brochure/) - Selecting the right proppant is critical for optimizing hydraulic fracturing operations. A traditional API proppant crush test provides valuable quality control data but fall short in predicting proppant pack permeability and conductivity. Complete Crush™ provides a new, proprietary approach to proppant crush testing that leverages a modified Kozeny-Carman equation to estimate permeability directly from crush testing, offering - [Inflow Tracer Diagnostics Brochure](https://www.corelab.com/catalogueitems/inflow-tracer-diagnostics-brochure/) - Core Lab’s expansive portfolio of polymer embedded oil and water tracers provide identification of fluid type inflow and estimates contribution on a zonal basis from your reservoir. - [FLOWPROFILER™ Oil Tracer Brochure](https://www.corelab.com/catalogueitems/flowprofiler_oil/) - [SPECTRAFLOOD™ brochure](https://www.corelab.com/catalogueitems/spectraflood-brochure/) - Optimize Flood Performance During Any Stage of the IOR/EOR Process - [GoTrace](https://www.corelab.com/catalogueitems/gotrace/) - [COMPLETIONPROFILER® brochure](https://www.corelab.com/catalogueitems/completionprofiler-brochure/) - Quantify multi-phase post-fracture production performance - [COMPLETIONPROFILER® - tool diagram (vertical)](https://www.corelab.com/catalogueitems/completion-profiler-tool-diagram-vertical/) - [COMPLETIONPROFILER® - tool diagram (horizontal)](https://www.corelab.com/catalogueitems/completion-profiler-tool-diagram-horizontal/) - [RELATIVE PERMEABILITY STEADY STATE - SSRel K](https://www.corelab.com/catalogueitems/relative-permeability-steady-state-ssrel-k/) - [Automatic Gas Permeameter and Porosimeter](https://www.corelab.com/catalogueitems/automatic-gas-permeameter-and-porosimeter/) - [TRI-X 100-200](https://www.corelab.com/catalogueitems/tri-x-100-200-2/) - [PVT HP HT](https://www.corelab.com/catalogueitems/pvt-hp-ht-2/) - [BOPT](https://www.corelab.com/catalogueitems/bopt/) - [Hot Rolls](https://www.corelab.com/catalogueitems/hot-roll/) - [CPS 10 1000](https://www.corelab.com/catalogueitems/cps-10000/) - [CVD Valve](https://www.corelab.com/catalogueitems/cvd-valve/) - [VAVC](https://www.corelab.com/catalogueitems/vavc/) - [Compression Bench](https://www.corelab.com/catalogueitems/compression-bench/) - [BECFD 100](https://www.corelab.com/catalogueitems/1122/) - [SABF 500](https://www.corelab.com/catalogueitems/sabf-500/) - [BECCD ClefDyn](https://www.corelab.com/catalogueitems/beccd-clefdyn/) - [BECCD 20-50-100](https://www.corelab.com/catalogueitems/beccd-20-50-100/) - [Microvalves](https://www.corelab.com/catalogueitems/mv-500/) - [ST DAC](https://www.corelab.com/catalogueitems/dac/) - [APD 200](https://www.corelab.com/catalogueitems/apd-200/) - [GLS 1500](https://www.corelab.com/catalogueitems/gls-1500/) - [TRI-X 6-1500 SD](https://www.corelab.com/catalogueitems/tri-x-6-1500-sd/) - [TRI-X 40-50](https://www.corelab.com/catalogueitems/tri-x-40-50/) - [TRI-X 150-200](https://www.corelab.com/catalogueitems/tri-x-150-200/) - [TRI-X 100-200](https://www.corelab.com/catalogueitems/tri-x-100-200/) - [The CUBE](https://www.corelab.com/catalogueitems/the-cube/) - [Stigma 1000](https://www.corelab.com/catalogueitems/stigma-1000/) - [Stigma 500](https://www.corelab.com/catalogueitems/stigma-500/) - [Stigma 300](https://www.corelab.com/catalogueitems/stigma-300/) - [Stigma 200](https://www.corelab.com/catalogueitems/stigma-200/) - [Stigma 100](https://www.corelab.com/catalogueitems/stigma-100/) - [VPDSV 1000-700](https://www.corelab.com/catalogueitems/vpdsv-1000-700/) - [VPDSV 500-1500D Heated](https://www.corelab.com/catalogueitems/vpdsv-500-1500d-heated/) - [VPSSV 300-1000D](https://www.corelab.com/catalogueitems/vpssv-300-1000d/) - [VPSSV 100-70](https://www.corelab.com/catalogueitems/vpssv-100-70/) - [VPSSV 50-1000D](https://www.corelab.com/catalogueitems/vpssv-50-1000d/) - [VPSSH 300-1000D](https://www.corelab.com/catalogueitems/vpssh-300-1000d/) - [VPSSV 50-1000](https://www.corelab.com/catalogueitems/vpssv-50-1000/) - [VPSSH 6-700](https://www.corelab.com/catalogueitems/vpssh-6-700/) - [VMPS 30-700](https://www.corelab.com/catalogueitems/vmps-30-700/) - [TSIR 700](https://www.corelab.com/catalogueitems/tsir-700/) - [SPHC 200-200](https://www.corelab.com/catalogueitems/sphc-200-200/) - [SPHC 100-500](https://www.corelab.com/catalogueitems/sphc-100-500/) - [QUAD Recombination Cell](https://www.corelab.com/catalogueitems/quad-recombination-cell/) - [QUAD Viscometer](https://www.corelab.com/catalogueitems/quad-viscometer/) - [QUAD Generalities](https://www.corelab.com/catalogueitems/quad-generalities/) - [OSR4 Oil Sample Restoration](https://www.corelab.com/catalogueitems/osr4-oil-sample-restoration/) - [OSR2 Oil Sample Restoration](https://www.corelab.com/catalogueitems/osr2/) - [SBOPT - Heating Trolley](https://www.corelab.com/catalogueitems/sbopt-heating-trolley/) - [HP HT DMC](https://www.corelab.com/catalogueitems/hp-ht-dmc/) - [Viscometer 3 1000 LT](https://www.corelab.com/catalogueitems/ccvl-3-1000-g/) - [RC 1500 1500](https://www.corelab.com/catalogueitems/rc-1500-1500/) - [RC 1500 1000](https://www.corelab.com/catalogueitems/rc-1500-1000/) - [Cryogenic Distillation Unit CDU](https://www.corelab.com/catalogueitems/cryogenic-distillation-unit-cdu/) - [GOR 100](https://www.corelab.com/catalogueitems/gor-100/) - [GAS 10000 T](https://www.corelab.com/catalogueitems/gas-10000-h-a/) - [GAS 5000 T](https://www.corelab.com/catalogueitems/gas-5000-h/) - [GAS 4000](https://www.corelab.com/catalogueitems/gas-4000/) - [GAS 2000](https://www.corelab.com/catalogueitems/gas-2000/) - [Manual Gasmeter 100 ml](https://www.corelab.com/catalogueitems/gas-100/) - [PVT Gas 250 1000](https://www.corelab.com/catalogueitems/pvt-gas-250-1000-2/) - [BO PVT 200 1000 HT](https://www.corelab.com/catalogueitems/bo-pvt-200-1000-ht/) - [BO PVT 200 1000](https://www.corelab.com/catalogueitems/bo-pvt-200-1000/) - [PVT300 700FV EDU](https://www.corelab.com/catalogueitems/pvt300-700fv-edu/) - [PVT1000 700FV](https://www.corelab.com/catalogueitems/pvt1000-700fv/) - [PVT500 1500FV](https://www.corelab.com/catalogueitems/pvt500-1500fv/) - [PVT250 2000FV](https://www.corelab.com/catalogueitems/pvt250-2000fv/) - [PVT250 1500FV](https://www.corelab.com/catalogueitems/pvt250-1500fv-2/) - [PVT400 1000FV](https://www.corelab.com/catalogueitems/pvt400-1000fv/) - [RPS 15000](https://www.corelab.com/catalogueitems/rps-15000/) - [Core Aging System](https://www.corelab.com/catalogueitems/core-aging-system/) - [Manual Gas Permeameter and Porosimeter 2R](https://www.corelab.com/catalogueitems/manual-gas-permeameter-and-porosimeter-2r/) - [AMEP V2](https://www.corelab.com/catalogueitems/amep-v2/) - [VMP 15000](https://www.corelab.com/catalogueitems/vmp-15000/) - [VMP 20000](https://www.corelab.com/catalogueitems/vmp-20000/) - [InterFacial Tension Cell – IFT Cell](https://www.corelab.com/catalogueitems/interfacial-tension-cell-ift-cell/) - [Jet Impingement](https://www.corelab.com/catalogueitems/jet/) - [SPECTRASCAN® tool diagram](https://www.corelab.com/catalogueitems/spectrascan-tool-diagram/) - [PACKSCAN tool diagram](https://www.corelab.com/catalogueitems/packscan-tool-diagram/) - [SPECTRACHEM®](https://www.corelab.com/catalogueitems/spectrachem/) - [Carbon Sequestration](https://www.corelab.com/catalogueitems/carbon-sequestration/) - [RAPIDZoom Slab](https://www.corelab.com/catalogueitems/rapidzoom-slab/) - [Carbon Storage Overview](https://www.corelab.com/catalogueitems/carbon-storage-overview/) - [D-Code_Brochure](https://www.corelab.com/catalogueitems/d-code_brochure/) - [Brochure_RAPID_Analytics](https://www.corelab.com/catalogueitems/brochure_rapid_analytics/) - [Lamcount](https://www.corelab.com/catalogueitems/lamcount/) - [ART_Brochure_V2](https://www.corelab.com/catalogueitems/art_brochure_v2/) - [brochure_RAPIDZoom](https://www.corelab.com/catalogueitems/brochure_rapidzoom/) - [PetrophysicalModel-4](https://www.corelab.com/catalogueitems/petrophysicalmodel-4/) - [Heavy Oil Flyer - Final](https://www.corelab.com/catalogueitems/heavy-oil-flyer-final/) - [COMPLETIONPROFILER](https://www.corelab.com/catalogueitems/completionprofiler/) - [Completion Profiler vertical](https://www.corelab.com/catalogueitems/completion-profiler-vertical/) - [Completion Profiler-horizontal](https://www.corelab.com/catalogueitems/completion-profiler-horizontal/) - [PACKSCAN](https://www.corelab.com/catalogueitems/packscan/) - [INVASION PROFILER](https://www.corelab.com/catalogueitems/invasion-profiler/) - [FlowProfiler_Gas](https://www.corelab.com/catalogueitems/flowprofiler_gas/) - [PVT 400-1000 FV](https://www.corelab.com/catalogueitems/pvt-400-1000-fv/) - [CPIDRI](https://www.corelab.com/catalogueitems/cpidri/) - [CAS](https://www.corelab.com/catalogueitems/cas/) - [CAP-700](https://www.corelab.com/catalogueitems/cap-700/) - [MG2P-500](https://www.corelab.com/catalogueitems/mg2p-500/) - [MG2P-500-D](https://www.corelab.com/catalogueitems/mg2p-500-d/) - [AG2P-700](https://www.corelab.com/catalogueitems/ag2p-700/) - [AMEP2c3c](https://www.corelab.com/catalogueitems/amep2c3c/) - [PVT BO 200-1000](https://www.corelab.com/catalogueitems/pvt-bo-200-1000/) - [PVT BO 200-1000 HT](https://www.corelab.com/catalogueitems/pvt-bo-200-1000-ht/) - [PVT Gas 250-1000](https://www.corelab.com/catalogueitems/pvt-gas-250-1000/) - [PVT250-1500FV](https://www.corelab.com/catalogueitems/pvt250-1500fv/) - [PVT 1000-700 FV](https://www.corelab.com/catalogueitems/pvt-1000-700-fv/) - [PVT 300-700 FV EDU](https://www.corelab.com/catalogueitems/1315/) - [CVL 10-1000](https://www.corelab.com/catalogueitems/cvl-10-1000/) - [CVL 10-1500](https://www.corelab.com/catalogueitems/cvl-10-1500/) - [Mercury Free Spikeflash](https://www.corelab.com/catalogueitems/mercury-free-spikeflash/) ## Events - [Core Laboratories Second Quarter 2026 Earnings Call](https://www.corelab.com/events/core-laboratories-second-quarter-2026-earnings-call/) - [International Perforating Forum 2026](https://www.corelab.com/events/international-perforating-forum-2026/) - Connect with a Core Lab expert at the 2026 International Perforating Forum to discuss perforating technologies, completion solutions, and industry innovation. - [PVT & EoS Masterclass](https://www.corelab.com/events/pvt-eos-masterclass/) - Advance your PVT & EoS skills at live masterclasses in Houston, Brisbane, London and Abu Dhabi — expert-led, interactive reservoir fluid training. - [Africa Energies Summit 2026](https://www.corelab.com/events/africa-energies-summit-2026/) - Join Core Lab professionals Anne McAfee and Scott Parker in the London as part of the Africa Energies Summit from May 12-14, 2026. - [Core Laboratories First Quarter 2026 Earnings Call](https://www.corelab.com/events/core-laboratories-first-quarter-2026-earnings-call/) - Investors can tune into the 2026 Q1 earnings call live beginning on April 30, 2026 at 7:30 A.M. CDT / 8:30 A.M. EDT. - [Bank of America Investor Relations Insights Conference 2026](https://www.corelab.com/events/bank-of-america-investor-relations-insights-conference-2026/) - [CF&B European MidCap Event](https://www.corelab.com/events/cfb-european-midcap-event-3/) - [Pickering Energy Partners Event](https://www.corelab.com/events/pickering-energy-partners-event/) - [Daniel Energy Partners Executive Series](https://www.corelab.com/events/daniel-energy-partners-executive-series-2/) - [Citi Energy & Climate Technology Conference](https://www.corelab.com/events/citi-energy-climate-technology-conference/) - [CF&B European MidCap Event](https://www.corelab.com/events/cfb-european-midcap-event-2/) - [Piper Sandler Annual Energy Conference](https://www.corelab.com/events/piper-sandler-annual-energy-conference-2/) - [Scotiabank Global Energy Conference](https://www.corelab.com/events/scotiabank-global-energy-conference/) - [Daniel Energy Partners Energy Conference and Expo (THRIVE)](https://www.corelab.com/events/daniel-energy-partners-energy-conference-and-expo-thrive/) - [Core Laboratories Fourth Quarter 2025 Earnings Call](https://www.corelab.com/events/core-laboratories-fourth-quarter-2025-earnings-release-and-conference-call-2/) - FOR IMMEDIATE RELEASE CORE LABORATORIES ANNOUNCES TIMING OF FOURTH QUARTER 2025EARNINGS RELEASE AND CONFERENCE CALL HOUSTON, January 5, 2026 – Core Laboratories (NYSE: "CLB") will host its fourth quarter 2025 conference call for investors and analysts at 7:30 a.m. CST / 8:30 a.m. EST on February 5, 2026. Larry Bruno, Chairman and CEO, Chris Hill, - [Core Lab at HFTC 2026](https://www.corelab.com/events/core-lab-at-hftc-2026/) - Join the Core Lab team at the Society of Petroleum Engineers Hydraulic Fracturing Technology Conference and Exhibition in The Woodlands, TX February 3-5, 2026. - [Bank of America Global Energy Conference](https://www.corelab.com/events/bank-of-america-global-energy-conference/) - [CORE LABORATORIES THIRD QUARTER 2025 EARNINGS RELEASE AND CONFERENCE CALL](https://www.corelab.com/events/core-laboratories-third-quarter-2025-earnings-release-and-conference-call/) - FOR IMMEDIATE RELEASE CORE LABORATORIES ANNOUNCES TIMING OF THIRD QUARTER 2025EARNINGS RELEASE AND CONFERENCE CALL HOUSTON, September 24, 2025 – Core Laboratories (NYSE: "CLB") will host its third quarter 2025conference call for investors and analysts at 7:30 a.m. CDT / 8:30 a.m. EST on October 23, 2025. Larry Bruno, Chairman and CEO, Chris Hill, CFO, - [Larry Bruno Podcast Interview with Daniel Energy Partners](https://www.corelab.com/events/larry-bruno-podcast-interview-with-daniel-energy-partners/) - https://www.danielep.com/podcast - [Barclays 39th Annual Energy-Power Conference](https://www.corelab.com/events/barclays-39th-annual-energy-power-conference/) - 2025 IR Presentation Handout- BarclaysDownload - [Daniel Energy Partners Executive Series](https://www.corelab.com/events/daniel-energy-partners/) - 2025 IR Presentation Handout- DEPDownload - [Citi Natural Resources Conference](https://www.corelab.com/events/citi-natural-resources-conference/) - [CF&B European MidCap Event](https://www.corelab.com/events/cfb-european-midcap-event/) - 2025 IR Presentation Handout-London MidCapDownload - [A&F Conference](https://www.corelab.com/events/af-conference/) - [TPH&Co Hotter N' Hell Conference](https://www.corelab.com/events/tudor-pickering-hotter-n-hell-conference/) - [Bank of America Investor Relations Insights Conference](https://www.corelab.com/events/bank-of-america-investor-relations-insights-conference/) - [Piper Sandler Annual Energy Conference](https://www.corelab.com/events/piper-sandler-annual-energy-conference/) - [DEP Houston Energy Conference and Expo](https://www.corelab.com/events/dep-houston-energy-conference-and-expo/) - [Daniel Energy Partners Executive Series](https://www.corelab.com/events/daniel-energy-partners-executive-series/) - [CF&B European MidCap Event 25th Edition](https://www.corelab.com/events/cfb-european-midcap-event-25th-edition/) - [38th Annual Society of Core Analysis Symposium](https://www.corelab.com/events/annual-society-of-core-analysis-symposium/) - Learn more: https://www.scaweb.org/ - [European Well Performance Forum](https://www.corelab.com/events/european-well-performance-forum/) - [Core Laboratories' Q2 2025 Earnings Webcast](https://www.corelab.com/events/q2-2025-earnings-webcast-announcement/) - FOR IMMEDIATE RELEASE CORE LABORATORIES ANNOUNCES TIMING OF SECOND QUARTER 2025EARNINGS RELEASE AND CONFERENCE CALL HOUSTON, June 24, 2025 – Core Laboratories (NYSE: "CLB") will host its second quarter 2025conference call for investors and analysts at 7:30 a.m. CDT / 8:30 a.m. EST on July 24, 2025. Larry Bruno, Chairman and CEO, Chris Hill, CFO, - [URTeC 2025](https://www.corelab.com/events/urtec-2025/) - Attending URTeC 2025? Please join us at booth #2615, meet with our experts and technology developers, and explore how Core Lab is enabling operators to maximize value from unconventional reservoirs through our technologies, tools, and solutions. CoreTechTalk 2025 Don’t miss our CoreTechTalk panel discussion on June 10th at 11:30 AM at the Marriott Marquis, highlighting Core's reservoir description - [CORE LABORATORIES’ FOURTH QUARTER 2024 WEBCAST](https://www.corelab.com/events/core-laboratories-fourth-quarter-2024-webcast/) - FOR IMMEDIATE RELEASE CORE LABORATORIES ANNOUNCES TIMING OF FOURTH QUARTER 2024EARNINGS RELEASE AND CONFERENCE CALL HOUSTON, January 3, 2025 – Core Laboratories (NYSE: "CLB") will host its fourth quarter 2024 conference call for investors and analysts at 7:30 a.m. CST / 8:30 a.m. EST on January 30, 2025. Larry Bruno, Chairman and CEO, Chris Hill, - [HFTC 2025](https://www.corelab.com/events/hftc-2025/) - Join us in The Woodlands, TX February 4-6th 2025 for the SPE Hydraulic Fracturing Technology Conference & Exhibition || HFTC 2025 - [URTeC 2024](https://www.corelab.com/events/urtec-2024/) - Join us at URTeC. Our team will be sharing recent work around A/B testing, perforating strategies, proppant evaluation, and production analysis. - [SPE ATCE 2024](https://www.corelab.com/events/spe-atce-2024/) - Join us in New Orleans, LA September 23-25th 2024 for the SPE Annual Technical Conference and Exhibit. If you are attending ATCE 2024, we would like to welcome you to the Core Lab booth (#825 - just behind the main entrance to the exhibit hall). Our team will be sharing examples of recent work with clients around topics - [Woodford-Barnett Consortium Workshop](https://www.corelab.com/events/woodford-barnett-consortium-workshop/) - Join us at our Houston Advanced Technology Center on May 21, 2024 for the Woodford-Barnett Consortium Workshop. The purpose of the workshop is to present the project's findings since its inception, including regional geology, organic geochemistry, petrophysical rock properties, and a regional summary of the Woodford and Barnett formations. The workshop will include a combination - [HFTC 2024](https://www.corelab.com/events/hftc-2024/) - Join us in The Woodlands, TX February 6-8th 2024 for the SPE Hydraulic Fracturing Technology Conference and Exhibition. If you are attending HFTC, we would like to welcome you to the Core Lab booth (#405 - just behind the main entrance to the exhibit hall). Our team will be sharing examples of recent work with clients around topics - [IPTC 2024](https://www.corelab.com/events/iptc2024/) - Join Core Lab in DHAHRAN EXPO KINGDOM OF SAUDI ARABIA, February 12th-14th 2024 for IPTC. Core Laboratories is excited to announce that we will be exhibiting at IPTC 2024! Stop by Booth 5100 to meet with our specialists and learn about New Technologies in Data Management, P&A and Completion Diagnostics. Spend some time during our - [SPE Workshop: Completion Optimization focused on the Near Wellbore Region – Methods, Techniques and Technologies that are Critical for Continued Process Improvement](https://www.corelab.com/events/spe-workshop-completion-optimization-focused-on-the-near-wellbore-region-methods-techniques-and-technologies-that-are-critical-for-continued-process-improvement/) - Session: Parent Child Interactions - Depletion Focused Session Chairpersons: Dick Leonard, ProTechnics; Joel Mazza, Fracture ID Infill development is becoming more prevalent across North America's unconventional plays. This session will cover current technologies being utilized for depletion mapping/modeling and resulting production optimization strategies employed during the drilling and completion phases of child well development. Speakers: - [SPE ATCE 2023](https://www.corelab.com/events/spe-atce-2023/) - Join Core Lab in San Antonio October 16-18th 2023 for SPE ATCE. Our team will be sharing examples of recent work with customers around topics such as perforating strategies, pre-frac reservoir evaluation, completion efficiency, and production analysis. - [URTeC 2023](https://www.corelab.com/events/urtec-2023/) - Join Core Lab on the exhibit floor or in the 20' x 40' "Core Exhibits" space. Our team will be sharing examples of recent work with customers around topics such as perforating strategies, pre-frac reservoir evaluation, completion efficiency, and production analysis. - [SPE Workshop](https://www.corelab.com/events/spe-workshop-well-completions-for-unconventional-resource-development-optimization-and-parent-child-interaction/) - Well Completions for Unconventional Resource Development Optimization and Parent-Child Interaction Along with the technical program, Buddy Woodroof (ProTechnics) will be moderating a discussion for attendees to engage with their colleagues, program speakers, and committee members on current topics, technical discussions, or industry challenges. Workshops maximize the exchange of ideas among attendees and presenters through brief technical - [Core Laboratories' fourth quarter 2022 Webcast](https://www.corelab.com/events/core-laboratories-fourth-quarter-2022-webcast/) - Core Laboratories (NYSE: "CLB US" and Euronext Amsterdam: "CLBNA") will broadcast its fourth quarter 2022 conference call over the Internet at 7:30 a.m. CST / 2:30 p.m. CET on February 2, 2023. Larry Bruno, Chairman and CEO, Chris Hill, CFO, and Gwen Gresham, SVP Corporate Development and Investor Relations, will discuss financial and operational results. ## Presentations - [2025 Investor Presentation](https://www.corelab.com/presentations/2025-ir-presentation/) ## Products - [FIRE™ RF-Safe Detonator](https://www.corelab.com/products/fire-rf/) - The FIRE™ RF-Safe Detonator offers Increased level of protection against RF and stray voltage while minimizing well-site hazards. - [HERO-HardRock™](https://www.corelab.com/products/hero-hr/) - Learn more about the HERO line of products from Core Lab. - [PAC™](https://www.corelab.com/products/pac/) - [MADMeg](https://www.corelab.com/products/mad-meg/) - [HPM Densitometer System](https://www.corelab.com/products/hpm-densitometer-system/) - [STIMGUN™](https://www.corelab.com/products/stimgun/) - [STIMTUBE™](https://www.corelab.com/products/stimtube/) - [Advanced Digital Imaging System, ADIS](https://www.corelab.com/products/advanced-digital-imaging-system-adis/) - [Pulverizor](https://www.corelab.com/products/pulverizor/) - [Helios](https://www.corelab.com/products/helios/) - [Initiation Systems](https://www.corelab.com/products/initiation-systems/) - [ROC Lab Performance Evaluation](https://www.corelab.com/products/roc-lab/) - [Phantom®](https://www.corelab.com/products/phantom/) - [Relative Permeability Steady State System with Gamma Ray Saturation Monitoring, SSRel K](https://www.corelab.com/products/relative-permeability-steady-state-system-with-gamma-ray-saturation-monitoring-ssrel-k/) - [UZI™](https://www.corelab.com/products/uzi/) - [Raptor™](https://www.corelab.com/products/raptor/) - [Shogun™](https://www.corelab.com/products/shogun/) - [Titanium Free-Piston Bottle](https://www.corelab.com/products/titanium-free-piston-bottle/) - [Compression Bench 1000 kN](https://www.corelab.com/products/compression-bench-1000-kn/) - [Force Sensor Calibration Bench 100 kN](https://www.corelab.com/products/force-sensor-calibration-bench-100-kn/) - [Torque Sensor Calibration Bench](https://www.corelab.com/products/torque-sensor-calibration-bench/) - [Torque Wrench Calibration Bench](https://www.corelab.com/products/torque-wrench-calibration-bench/) - [Torque Calibration Bench 20 Nm 50 Nm 100 Nm](https://www.corelab.com/products/torque-calibration-bench-20-nm-50-nm-100-nm/) - [Automatic Pressure Drive 200 bar](https://www.corelab.com/products/automatic-pressure-drive-200-bar/) - [Gas Loading System 1500 bar](https://www.corelab.com/products/gas-loading-system-1500-bar/) - [Triaxial Press 6 Gpa 1500°C for Solid Deformation](https://www.corelab.com/products/triaxial-press-6-gpa-1500c-for-solid-deformation/) - [Triaxial Press 40 Mpa 50°C](https://www.corelab.com/products/triaxial-press-40-mpa-50c/) - [Triaxial Press 150 Mpa 200°C](https://www.corelab.com/products/triaxial-press-150-mpa-200c/) - [Triaxial Press 100 Mpa 200°C](https://www.corelab.com/products/triaxial-press-100-mpa-200c/) - [Cube 1500](https://www.corelab.com/products/cube-1500/) - [Cube 1000](https://www.corelab.com/products/cube-1000/) - [Cube 700](https://www.corelab.com/products/cube-700/) - [Cube 350](https://www.corelab.com/products/cube-350/) - [STIGMA Pump 1000 ml 300 bar](https://www.corelab.com/products/stigma-pump-1000-ml-300-bar/) - [STIGMA Pump 500 ml 700 bar](https://www.corelab.com/products/stigma-pump-500-ml-700-bar/) - [STIGMA Pump 300 ml 1000 bar](https://www.corelab.com/products/stigma-pump-300-ml-1000-bar/) - [STIGMA Pump 200 ml 1200 bar](https://www.corelab.com/products/stigma-pump-200-ml-1200-bar/) - [STIGMA Pump 100 ml 1500 bar](https://www.corelab.com/products/stigma-pump-100-ml-1500-bar/) - [Double VPDSV 500 ml 700 bar Heated](https://www.corelab.com/products/double-vpdsv-500-ml-700-bar-heated/) - [Double VPSSV Pump 300 ml 1000 bar](https://www.corelab.com/products/double-vpssv-pump-300-ml-1000-bar/) - [Double VPSSV Pump 50 ml 1000 bar](https://www.corelab.com/products/double-vpssv-pump-50-ml-1000-bar/) - [Double VPSSH Pump 300 ml 1000 bar](https://www.corelab.com/products/double-vpssh-pump-300-ml-1000-bar/) - [InterFacial Tension Cell – IFT Cell](https://www.corelab.com/products/interfacial-tension-ift/) - [Test Inhibitor Scale Rig 700 bar](https://www.corelab.com/products/test-inhibitor-scale-rig-700-bar/) - [Onfield Recombination Cell](https://www.corelab.com/products/onfield-recombination-cell/) - [Onfield Laboratory](https://www.corelab.com/products/onfield-laboratory/) - [Oil Sample Restoration 4 Cylinders](https://www.corelab.com/products/oil-sample-restoration-4-cylinders/) - [Oil Sample Restoration 2 Cylinders](https://www.corelab.com/products/oil-sample-restoration-2-cylinders/) - [X-SPAN® Systems](https://www.corelab.com/products/x-span-systems/) - [ZERO180™ - Disposable](https://www.corelab.com/products/zero180-gun-system/) - [Ceramic Barrier Valves](https://www.corelab.com/products/ceramic-barrier-valves/) - [HTD-BLAST](https://www.corelab.com/products/htd-blast-2/) - [Recombination Cell 3000 ml 500 bar Low Temperature](https://www.corelab.com/products/recombination-cell-3000-ml-500-bar-low-temperature/) - [Recombination Cell 1500 ml 1500 bar](https://www.corelab.com/products/recombination-cell-1500-ml-1500-bar/) - [Recombination Cell 1500 ml 1000 bar](https://www.corelab.com/products/recombination-cell-1500-ml-1000-bar/) - [Cryogenic Distillation Unit](https://www.corelab.com/products/cryogenic-distillation-unit/) - [Mercury Free SpikeFlash](https://www.corelab.com/products/mercury-free-spikeflash/) - [Flash Equilibrium Separator](https://www.corelab.com/products/flash-equilibrium-separator/) - [Automatic Gasmeter 10000 ml Heated](https://www.corelab.com/products/automatic-gasmeter-10000-ml-heated/) - [Manual Gasmeter 4000 ml](https://www.corelab.com/products/manual-gasmeter-4000-ml/) - [Manual Gasmeter 100 ml](https://www.corelab.com/products/manual-gasmeter-100-ml/) - [PVT Cell 20 ml 500 bar High Pressure High Temperature](https://www.corelab.com/products/pvt-cell-20-ml-500-bar-high-pressure-high-temperature/) - [PVT Cell 250 ml 1000 bar Gas](https://www.corelab.com/products/pvt-cell-250-ml-1000-bar-gas/) - [PVT Cell 200 ml 1000 bar Black Oil High Temperature](https://www.corelab.com/products/pvt-cell-200-ml-1000-bar-black-oil-high-temperature/) - [PVT Cell 200 ml 1000 bar Black Oil](https://www.corelab.com/products/pvt-cell-200-ml-1000-bar-black-oil/) - [PVT Cell 300 ml 700 bar Full Visibility Educational](https://www.corelab.com/products/pvt-cell-300-ml-700-bar-full-visibility-educational/) - [PVT Cell 1000 ml 700 bar Full Visibility](https://www.corelab.com/products/pvt-cell-1000-ml-700-bar-full-visibility/) - [PVT Cell 500 ml 1500 bar Full Visibility](https://www.corelab.com/products/pvt-cell-500-ml-1500-bar-full-visibility/) - [PVT Cell 250 ml 2000 bar Full Visibility](https://www.corelab.com/products/pvt-cell-250-ml-2000-bar-full-visibility/) - [PVT Cell 250 ml 1500 bar Full Visibility](https://www.corelab.com/products/pvt-cell-250-ml-1500-bar-full-visibility/) - [PVT Cell 400 ml 1000 bar Full Visibility](https://www.corelab.com/products/pvt-cell-400-ml-1000-bar-full-visibility/) - [Core Aging System](https://www.corelab.com/products/core-aging-system/) - [Automatic Gas Permeameter Porosimeter 700 bar](https://www.corelab.com/products/automatic-gas-permeameter-porosimeter-700-bar/) - [Manual Gas Permeameter Porosimeter 500 bar with Double Core Holder](https://www.corelab.com/products/manual-gas-permeameter-porosimeter-500-bar-with-double-core-holder/) - [Ambient Electrical Properties System](https://www.corelab.com/products/ambient-electrical-properties-system/) - [RAPID™](https://www.corelab.com/products/rapidtm/) - [Manual Valve - VMP 15000](https://www.corelab.com/products/manual-valve-15000-psi/) - [Manual Valve - VMP 20000](https://www.corelab.com/products/manual-valve-20000-psi/) - [Jet Impingement](https://www.corelab.com/products/jet-impingement/) - [HERO®](https://www.corelab.com/products/hero/) - [GoTrace™](https://www.corelab.com/products/gotrace/) - [Vertical Band Saw](https://www.corelab.com/products/vertical-band-saw/) - [Trim Saw](https://www.corelab.com/products/trim-saw/) - [Ultragrain Grain Volume](https://www.corelab.com/products/ultragrain-grain-volume/) - [Mercury Capillary Pressure](https://www.corelab.com/products/mercury-capillary-pressure/) - [Pressure Decay Profile Permeameter - PDPK-400](https://www.corelab.com/products/pressure-decay-profile-permeameter-pdpk-400/) - [Sapphire Cell 200 ml 200 bar](https://www.corelab.com/products/sapphire-cell-200-ml-200-bar/) - [Sapphire Cell 100 ml 500 bar](https://www.corelab.com/products/sapphire-cell-100-ml-500-bar/) - [Capillary Viscometer for Lab 1500 bar](https://www.corelab.com/products/capillary-viscometer-for-lab-1500-bar/) - [Capillary Viscometer for Lab 1000 bar](https://www.corelab.com/products/capillary-viscometer-for-lab-1000-bar/) - [Capillary Viscometer for Lab 3 ml 1000 bar Gas](https://www.corelab.com/products/capillary-viscometer-for-lab-3-ml-1000-bar-gas/) - [Acoustically Monitored Separator, AMS™-900-20K](https://www.corelab.com/products/acoustically-monitored-separator-ams-900-20k/) - [Relative Permeability System 1000 bar](https://www.corelab.com/products/relative-permeability-system-1000-bar/) - [Core Measurement System, CMS-300](https://www.corelab.com/products/core-measurement-system-cms-300/) - [Heating Trolley](https://www.corelab.com/products/heating-trolley/) - [Manual Gasmeter 5000 ml Heated](https://www.corelab.com/products/manual-gasmeter-5000-ml-heated/) - [Manual Gasmeter 2000 ml](https://www.corelab.com/products/manual-gasmeter-2000-ml/) - [Heating Tubing System](https://www.corelab.com/products/heating-tubing-system/) - [Automatic Back Pressure Controller 1000 bar](https://www.corelab.com/products/automatic-back-pressure-controller-1000-bar/) - [Constant Volume Depletion Valve](https://www.corelab.com/products/constant-volume-depletion-valve/) - [Constant Volume Automatic Valve](https://www.corelab.com/products/constant-volume-automatic-valve/) - [VCL Series of Visual Cells](https://www.corelab.com/products/vcl-series-of-visual-cells-2/) - [VC Series Visual Cell](https://www.corelab.com/products/vc-series-visual-cell-2/) - [Microvalve 500 bar](https://www.corelab.com/products/microvalve-500-bar/) - [Diamond Anvil Cell](https://www.corelab.com/products/diamond-anvil-cell/) - [VPSSV Pump 500 ml 700 bar](https://www.corelab.com/products/vpssv-pump-500-ml-700-bar/) - [VPSSV Pump 50 ml 1000 bar](https://www.corelab.com/products/vpssv-pump-50-ml-1000-bar/) - [VPSSV Pump 300 ml 1000 bar](https://www.corelab.com/products/vpssv-pump-300-ml-1000-bar/) - [VPSSV Pump 100 ml 700 bar](https://www.corelab.com/products/vpssv-pump-100-ml-700-bar/) - [Double VPSSV Pump 500 ml 700 bar](https://www.corelab.com/products/double-vpssv-pump-500-ml-700-bar/) - [Double VPSSV Pump 25 ml 700 bar Heated](https://www.corelab.com/products/double-vpssv-pump-25-ml-700-bar-heated/) - [VPSSH Pump 6 ml 700 bar](https://www.corelab.com/products/vpssh-pump-6-ml-700-bar/) - [VMPSS Pump 30 ml 700 bar](https://www.corelab.com/products/vmpss-pump-30-ml-700-bar/) - [VPDSV Pump 500 ml 1500 bar](https://www.corelab.com/products/vpdsv-pump-500-ml-1500-bar/) - [VPDSV Pump 1000 ml 700 bar](https://www.corelab.com/products/vpdsv-pump-1000-ml-700-bar/) - [Double VPDSV Pump 500 ml 1500 bar Heated](https://www.corelab.com/products/double-vpdsv-pump-500-ml-1500-bar-heated/) - [Double VPDSV Pump 1000 ml 700 bar](https://www.corelab.com/products/double-vpdsv-pump-1000-ml-700-bar/) - [Porosimeter, Gas PORG-200](https://www.corelab.com/products/porosimeter-gas-porg-200/) - [Permeameter, Relative permeability Studies PREL-300](https://www.corelab.com/products/permeameter-relative-permeability-studies-prel-300/) - [Permeameter, Liquid PERL-200](https://www.corelab.com/products/permeameter-liquid-perl-200/) - [Permeameter, Gas PERG-200](https://www.corelab.com/products/permeameter-gas-perg-200/) - [Capillary Pressure Appartus - CPPP-300](https://www.corelab.com/products/capillary-pressure-appartus-cppp-300/) - [Ambient Resisitivity System - ARS-200](https://www.corelab.com/products/ambient-resisitivity-system-ars-200/) - [Acoustic Velocity System](https://www.corelab.com/products/acoustic-velocity-system/) - [Abacus Bulk Volume Weigh Station](https://www.corelab.com/products/abacus-bulk-volume-weigh-station/) - [Shale Matrix Permeameter - SMP-200](https://www.corelab.com/products/shale-matrix-permeameter-smp-200/) - 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["Hydraulic Fracturing Then & Now: What has Changed and What Remains the Same?" from HFTC 2026](https://www.corelab.com/resources/hydraulic-fracturing-then-now-what-has-changed-and-what-remains-the-same-from-hftc-2026/) - Hear from experts John Ely, John Cramer, Ray Walker, Mike Mayerhofer, Dick Leonard, and Buddy Woodroof at SPE HFTC 2026 in The Woodlands, TX. - ["Optimizing Well Spacing: Balancing Efficiency and Reservoir Performance" from HFTC 2025](https://www.corelab.com/resources/optimizing-well-spacing-balancing-efficiency-and-reservoir-performance-from-hftc-2025/) - Critical considerations for well spacing. Maximizing recovery while minimizing interference | Impact of well spacing on reservoir depletion. - ["A View from the C-Suite"](https://www.corelab.com/resources/a-view-from-the-c-suite/) - Panelists Vicki Hollub - President and Chief Executive Officer, OxyTimothy S. Duncan - President and Chief Executive Officer, Talos Energy Inc. Lawrence V. Bruno - President and Chief Executive Officer, Core LaboratoriesOpening Remarks by Don Dumas - President, ProTechnics (Div. of Core Lab)Moderated by Buddy Woodroof - Technical Manager, ProTechnics (Div. of Core Lab) - [Insights and Highlights from SPE ATCE 2021](https://www.corelab.com/resources/protechtalks-atce-2021/) - Panelists Dave Erickson - VP Operations, Longshore Resources Cole Mombourquette - Regional Engineering Advisor, P.Eng., ProTechnics div. of Core LabChad Senters - US Sales Manager, ProTechnics div. of Core LabModerated by Buddy Woodroof – Technical Manager, ProTechnics (Div. of Core Lab) - ["Completion Considerations While Optimizing Operational Efficiencies" from URTeC 2023](https://www.corelab.com/resources/completion-considerations-while-optimizing-operational-efficiencies-from-urtec-2023/) - Panelists Steve Asbill - D&C Manager, Foundation EnergyJessica Barhaug - Senior Completions Engineer, OvintivLeen Weijers - VP of Engineering, Liberty Oilfield ServicesDick Leonard - Sr. Advisor, Strategic Projects, ProTechnics (Div. of Core Laboratories)Moderated by Buddy Woodroof – Technical Manager, ProTechnics (Div. of Core Lab) - ["Optimizing Offshore Well Completions: Cementing to Zonal Flow Assurance" from ATCE 2024](https://www.corelab.com/resources/optimizing-offshore-well-completions-cementing-to-zonal-flow-assurance-from-atce-2025/) - Panelists Jack Sanford - Senior Completions Advisor, Talos EnergyJoshua Malbrough - Sr. Completions & Well Intervention Engineer, ShellKarthik Mahadev - Fracturing and Stimulations Advisor, BPBarney Paternostro - VP - Completions, LLOG Exploration Co.Moderated by Buddy Woodroof – Technical Manager, ProTechnics (Div. of Core Lab) - ["Optimizing Completion Placement: Strategies for Effective Zonal Containment" from URTeC 2024](https://www.corelab.com/resources/optimizing-completion-placement-urtec-2024/) - This panel explores various methods and strategies to optimize completion placement, ensuring effective zonal containment - [Formation Damage Prediction](https://www.corelab.com/resources/formation-damage-prediction/) - Formation Damage Prediction Analysis of reservoir samples can help predict fluid sensitivity related to the mineralogy of the rock. It is important to identify the types and amounts of minerals that can potentially cause damage, and to determine the location of the minerals in relation to the effective pore system. Thin Section Analysis Various types - [Advanced Rock Typing on Percussion Sidewall Core](https://www.corelab.com/resources/art-on-pswc/) - [Hitting the Reset Button](https://www.corelab.com/resources/protechtalks-hitting-the-reset-button/) - Panelists Lucas Bazan - President, Bazan Consulting, Inc. George King - Principal, GEK Engineering. PLLC Paul Weddle - Vice President Completions & Production, Tap Rock Resources Dick Leonard - Director of Engineering, ProTechnics (Div. of Core Laboratories) Moderated by Buddy Woodroof – Technical Manager, ProTechnics (Div. of Core Lab) - [Modern Simul-fracs - Downhole Implications](https://www.corelab.com/resources/protechtalks-modern-simulfracs/) - Panelists Mike Mayerhofer - Director of Technology, Liberty Oilfield ServicesGerardo Torres - Vice President Permian Completions, Pioneer Natural ResourcesDr. Ali Daneshy - President, Daneshy Consultants InternationalTanner Wood - Regional Engineering Advisor, ProTechnics (Div. of Core Laboratories) Moderated by Buddy Woodroof - Technical Manager, ProTechnics (Div. of Core Lab) - [Shoot First and Ask Questions Later. Wait... Don't Do That](https://www.corelab.com/resources/protechtalks-shoot-first/) - Panelists David Cramer - Senior Engineering Fellow, ConocoPhillips William Hunter - Completion Engineer, Ovintiv Malcolm Kintzing - Petroleum Engineer, Henry Resources Chris Squires - Regional Engineering Advisor, ProTechnics (Div. of Core Laboratories)Moderated by Buddy Woodroof – Technical Manager, ProTechnics (Div. of Core Lab) - [Making Sense of "All That Data" (ATCE 2022)](https://www.corelab.com/resources/protechtalks-atce-2022/) - Panelists Ali Daneshy - President, Daneshy Consultants International Ohm Lorwongngam - Completions Engineering Advisor, Bakken - Hess Corporation Venkateshwaran “Venky” Ramanathan - Completions Specialist, Subsurface - Torxen Oil & Gas Ltd. Cole Mombourquette - Regional Engineering Advisor, P.Eng. - ProTechnics div. of Core LabModerated by Buddy Woodroof – Technical Manager, ProTechnics (Div. of Core Lab) - [Connecting Your Frac to the Rock (URTeC 2022)](https://www.corelab.com/resources/protechtalks-urtec-2022/) - Panelists Dena Demboski - Vice President Operations, UpCurve Energy Colin McGonagill - CEO, McGonagill, Lambert & Bay Dr. Mukul Sharma - Professor, The University of Texas at Austin Tanner Wood - Regional Engineering Manager, ProTechnics (Div. of Core Laboratories) Stephen Drylie - Manager Reservoir Engineering, Integrated Reservoir Solutions (Div. of Core Laboratories) Moderated by Buddy - [Expert's Corner: George King](https://www.corelab.com/resources/experts-corner-george-king/) - Interview with George King, Principal at GEK Engineering Interviewed by Buddy Woodroof - May 2022 Buddy Woodroof, ProTechnicsWell, today we are pleased to have George King with us. And our introductory experts corner interview. What better person to kick off a new initiative than George King, I’ve said that about you in a number of different arenas. - [SPE-210134: Perf Guns, They’re Not Just for Holes Anymore! Perf Cluster Tracer Injection](https://www.corelab.com/resources/spe-210134-perf-guns-theyre-not-just-for-holes-anymore-perf-cluster-tracer-injection/) - SPE-210134 Perf Guns, They’re Not Just for Holes Anymore! Perf Cluster Tracer Injection Christopher Squires, Brad Leonard, Shaun Geerts, Matthew Clay Presented at SPE Annual Technical Conference and Exhibition, 2022 Abstract Oilfield water and oil tracers have historically been pumped into the fracturing fluid during well stimulation. This paper will introduce an alternative method of injecting - [Kodiak Best Practices](https://www.corelab.com/resources/kodiak-best-practices/) - [OOTPulsFracInputRequest_OEF-1000-001](https://www.corelab.com/resources/ootpulsfracinputrequest_oef-1000-001/) - [PRJ-1083-TB-02](https://www.corelab.com/resources/prj-1083-tb-02/) - [Naturally Fractured Reservoirs](https://www.corelab.com/resources/naturally-fractured-reservoirs/) - Naturally Fractured Reservoirs Natural fractures are important conduits for oil or gas flow to producing wells. Closure of these fractures seriously impairs well productivity. Determination of fracture conductivity and porosity versus closure stress are important for characterizing naturally fractured reservoirs and establishing safe operating conditions. Common problems encountered with naturally fractured reservoirs Extensive formation damage - [Proppant Flowback](https://www.corelab.com/resources/proppant-flowback/) - Proppant Flowback Predicting Proppant Flowback Proppant flowback can be detrimental to the conductivity of a wellbore fracture. Proppant flowback leads to reduced fracture width and can lead to fracture stimulation failure. Proppant flowback causes the oil and gas industry millions of dollars every year. Objectives To determine mechanical properties of proppant pack for conventional and - [SPE-181441: Evaluation of Completion Practices in the STACK Using Completion Diagnostics and Production Analysis](https://www.corelab.com/resources/spe-181441-evaluation-of-completion-practices-in-the-stack-using-completion-diagnostics-and-production-analysis/) - SPE-181441 Evaluation of Completion Practices in the STACK Using Completion Diagnostics and Production Analysis Chad Senters, S. Van Sickle, D. Snyder Presented at SPE Annual Technical Conference and Exhibition, 2016 Abstract Evaluation of completion techniques continues to help in cost reduction and optimization practices. The objective of this project is to evaluate completions within Oklahoma in the - [SPE-179175: Determining the Effectiveness of Isolation Techniques Using Completion Diagnostics and Production Analysis](https://www.corelab.com/resources/spe-179175-determining-the-effectiveness-of-isolation-techniques-using-completion-diagnostics-and-production-analysis/) - SPE-179175 Determining the Effectiveness of Isolation Techniques Using Completion Diagnostics and Production Analysis Chad Senters, D.J. Snyder, Mark Warren, Richard Leonard, Robert Woodroof Presented at SPE Hydraulic Fracturing Technology Conference, 2016 Abstract The development of unconventional resources in North America has led to the implementation of a variety of drilling and hydraulic fracturing techniques. This paper reviews - [SPE-174844: Reducing Costs and Optimizing Drilling and Completion Efficiencies in Unconventional Plays Using Completion Diagnostics](https://www.corelab.com/resources/spe-174844-reducing-costs-and-optimizing-drilling-and-completion-efficiencies-in-unconventional-plays-using-completion-diagnostics/) - SPE-174844 Reducing Costs and Optimizing Drilling and Completion Efficiencies in Unconventional Plays Using Completion Diagnostics Chad Senters, Mark Warren, Chris Squires, Robert Woodroof, Richard Leonard Presented at SPE Annual Technical Conference and Exhibition, 2015 Abstract Horizontal drilling and hydraulic fracturing techniques continue to drive the profitable development of previously uneconomical reservoirs. In many basins across the world, - [SPE-199713: Parenting Strategies for Underperforming Children](https://www.corelab.com/resources/spe-199713-parenting-strategies-for-underperforming-children/) - SPE-199713 Parenting Strategies for Underperforming Children Chad Senters Presented at SPE Hydraulic Fracturing Technology Conference and Exhibition, 2020 Abstract Negative fracture driven interactions (FDIs) have the potential to damage offset producing wells. Overlap in drainage area during hydrocarbon production can significantly increase drilling and completion costs as well. If wells are not drilled and completed optimally, then - [SPE-174979: Refracs- Diagnostics Provide a Second Chance to Get it Right](https://www.corelab.com/resources/5022/) - SPE-174979 Refracs- Diagnostics Provide a Second Chance to Get it Right Richard Leonard, Robert Woodroof, Chad Senters, Nick Moore Presented at SPE Annual Technical Conference and Exhibition, 2015 Abstract The surge in unconventional completions over the last 10 years has created a substantial accumulation of previously hydraulically fractured wells that are candidates for hydraulic refracturing (refracs). As - [SPE-181676: Evaluating and Optimizing Refracs - What the Diagnostics Are Telling Us](https://www.corelab.com/resources/spe-181676-evaluating-and-optimizing-refracs-what-the-diagnostics-are-telling-us/) - SPE-181676 Evaluating and Optimizing Refracs - What the Diagnostics Are Telling Us Richard Leonard, Robert Woodroof, Chad Senters, Tanner Wood, Stephen Drylie Presented at SPE Annual Technical Conference and Exhibition, 2016 Abstract Refracturing continues to provide operators with the opportunity to add production at a fraction of the cost to drill and complete a new well. Various - [SPE-196195: A Diagnostic Evaluation of Refracturing Techniques](https://www.corelab.com/resources/spe-196195-a-diagnostic-evaluation-of-refracturing-techniques/) - SPE-196195 A Diagnostic Evaluation of Refracturing Techniques Chad Senters, Jared Brady, Rusty Werline Presented at SPE Annual Technical Conference and Exhibition, 2019 Abstract The Barnett Shale continues to offer vast opportunities for refracturing operations. This study covers diagnostic data and case histories of refracturing in the Barnett Shale. Job design and completion techniques are evaluated throughout the - [Hydraulic Fracture Design](https://www.corelab.com/resources/hydraulic-fracture-design/) - Hydraulic Fracture Design Optimization of Hydraulic Fracture Design Using Geomechanics Tests Hydraulic Fracturing Plays an Important Role in Productivity Improvement Calculation of fracture height, width, and length are required for the optimization of the fracture design. Among data requirements to optimize hydraulic fracture design, mechanical properties (Young's modulus, Poisson's ratio, fracture toughness and - [Carbonate Reservoir Fracture Treatment](https://www.corelab.com/resources/carbonate-reservoir-fracture-treatment/) - Carbonate Reservoir Fracture Treatment Carbonate Reservoir Fracture Treatment: Acid or Propped? Fractures are important conduits for oil and gas flow to producing wells. Fracture closure due to stress can catastrophically impair well productivity. Determination of fracture conductivity versus closure stress is critical for determining which treatment is needed in carbonate reservoirs. Core Lab performs - [Wellbore Stability and Sand Control](https://www.corelab.com/resources/wellbore-stability-and-sand-control/) - Wellbore Stability and Sand Control Core Lab operates a full service geomechanics laboratory that provides our clients with test data and unmatched engineering analyses to predict borehole stability. Detailed characterization of wellbore stability offers important solutions to both drilling and production phase problems that cost the industry billions annually. Core Lab's geomechanics lab - [Thick Wall Cylinder](https://www.corelab.com/resources/thick-wall-cylinder/) - Advanced Rock Properties - Thick-Wall Cylinder Traditional and Advanced Thick-Wall Cylinder Tests Core Lab operates a full service geomechanics laboratory that provides customers with test data and engineering analyses to predict borehole failure. Wellbore stability and sanding predictions are simulated in the laboratory by performing either traditional thick-wall cylinder test or our proprietary advanced - [Pore Volume Compressibility](https://www.corelab.com/resources/pore-volume-compressibility/) - Advanced Rock Properties - Pore Volume Compressibility Pore Volume Compressibility: UPVC, HPVC and RTCM Applications of PVC Data: Drive mechanism determination Recoverable reserves determination Subsidence prediction Reservoir compaction conditions Horizontal permeability analysis Advantages of UPVC: Simulates actual reservoir production stress path Accounts for inelastic behavior of reservoir rock Measures compaction directly from axial strain Obtains - [Multi Frequency Laboratory Measurements](https://www.corelab.com/resources/multi-frequency-laboratory-measurements/) - Multi-Frequency Laboratory Measurements Multi-Frequency Laboratory Measurements on Rock Cores Core Lab operates a full-service geomechanics laboratory that provides customers with multi-frequency acoustic velocities, elastic properties and engineering analyses that revolutionize log calibration. Applications of Multi-Frequency Sonic Velocities Calibrate log to low-frequency seismic waves (20 Hz to 1000 Hz) Differentiate fizz gas from dry gas - [Low Frequency Measurements](https://www.corelab.com/resources/low-frequency-measurements/) - Service/Product Title Low-Frequency Laboratory Measurements on Rock Samples Core Lab operates a full service geomechanics laboratory that provides customers with multi-frequency acoustic velocities and elastic properties for revolutionary seismic and log calibration. Why low-frequency data are useful Most rock elastic properties are frequency dependent Seismic attributes such as formation reflectivity vary with frequency - [Geomechanics ExpressSM](https://www.corelab.com/resources/geomechanics-expresssm/) - Geomechanics ExpressSM Brinell Hardness to Identify Unconfined Compressive Strength Rapid, non-destructive, core-based strength logs using Brinell Hardness and Ultrasonic Velocity can rapidly identify the relative rock strength in conventional cores over large depth intervals. This measurement provides a "quick-look" at geomechanical properties. Benefits of using Brinell Hardness to develop Core-Based Strength (CBS) Logs Provides the relative strength along - [Dipole Sonic Log Calibration](https://www.corelab.com/resources/dipole-sonic-log-calibration/) - Dipole Sonic Log Calibration Dipole Sonic Log Calibration for Mechanical Properties Dipole sonic logs are often found to be inaccurate for predicting the mechanical properties of rocks in many reservoirs. These inaccuracies cause engineering failures including poor fracture designs and unreliable sand prediction analyses. Static lab data matching reservoir conditions are required for - [Core-Based Strength Logs](https://www.corelab.com/resources/core-based-strength-logs/) - Advanced Rock Properties - Core-Based Strength Logs Core-based strength logs are a non-destructive solution to probe relative strength of cores over large depth intervals. Two primary methods used to measure core strength are Brinell hardness and ultrasonic velocity. Both are important in identifying the weakest interval within the formation. Benefits of Core-Based Strength Logs: ASTM - [Solubility Swelling](https://www.corelab.com/resources/solubility-swelling/) - Enhanced Oil Recovery - EOR Solubility Swelling A known volume of reservoir fluid is charged to a high-pressure PVT cell and heated to reservoir temperature. A partial constant composition expansion (CCE) is performed to determine saturation pressure, relative volume, liquid density and liquid shrinkage data. The pressure is reduced until the sample volume has been - [Minimum Miscibility - Slim Tube](https://www.corelab.com/resources/minimum-miscibility-slim-tube/) - Enhanced Oil Recovery - EOR Minimum Miscibility - Slim Tube A slim tube miscibility test is performed using the equipment set-up as shown. Typically the test is performed within a 40 foot column pre-packed (glass beads or Ottawa sand) ¼" OD length of coiled stainless steel tubing. Columns with different lengths and packing materials can - [Minimum Miscibility Rising Bubble](https://www.corelab.com/resources/minimum-miscibility-rising-bubble/) - Enhanced Oil Recovery - EOR Minimum Miscibility - Rising Bubble Rising bubble apparatus (RBA) provides accurate, cost-effective measurement of minimum miscibility pressure. The most essential feature of the apparatus is a flat glass tube mounted vertically in a high pressure sight gauge in a temperature controlled oven. The glass tube is flat for better examination - [Inter Facial Tension](https://www.corelab.com/resources/inter-facial-tension/) - Enhanced Oil Recovery - EOR Inter Facial Tension Investigation of surface and interfacial tension requires a viewable environmental chamber, temperature and pressure control and observation equipment. The IFT cell operates to 10000psig at 350°F. Within this range most reservoir conditions can be accurately and safely simulated. This allows conducting experiments in an oxygen-free environment as - [Gas Revaporization](https://www.corelab.com/resources/gas-revaporization/) - Enhanced Oil Recovery - EOR Gas Revaporization A known volume of reservoir fluid is charged to a high-pressure PVT cell and heated to the reservoir temperature. A partial constant composition expansion (CCE) is performed on the sample down to an operating pressure selected by the client. A known volume of the gas phase is then - [Forward Multi-Contact](https://www.corelab.com/resources/forward-multi-contact/) - Enhanced Oil Recovery - EOR Forward Multi-Contact A known volume of reservoir fluid is charged to a high-pressure PVT cell and heated to the reservoir temperature. A measured portion of the injection gas is injected to the cell. The quantity of injection gas is expressed in terms of mole fraction of injection gas as a - [Equilibrium Contact](https://www.corelab.com/resources/equilibrium-contact/) - Enhanced Oil Recovery - EOR Equilibrium Contact From the swelling study a plot of saturation pressure versus gas injected is generated. Pressures are selected at varying injection ratios where the fluid exists as two phases at those conditions. A known volume of reservoir fluid is charged to a high-pressure PVT cell and heated to reservoir - [Backward Multi-Contact](https://www.corelab.com/resources/backward-multi-contact/) - Enhanced Oil Recovery - EOR Backward Multi-Contact The backward multi-contact study is performed in the same cell as is used for the swelling study. A known volume of reservoir fluid is charged to a high-pressure PVT cell and heated to the reservoir temperature. A partial constant composition expansion is carried out to just below the - [Using_gas_geochemistry_to_delineate_stru (1)](https://www.corelab.com/resources/using_gas_geochemistry_to_delineate_stru-1-2/) - [Ocubalidet et al., 2020](https://www.corelab.com/resources/ocubalidet-et-al-2020-2/) - [Milkov-Shale Gas-2020](https://www.corelab.com/resources/milkov-shale-gas-2020-2/) - [Milkov, 2021](https://www.corelab.com/resources/milkov-2021-2/) - [McCaffrey 1996 Cymric](https://www.corelab.com/resources/mccaffrey-1996-cymric-2/) - [Hwang et al 2000](https://www.corelab.com/resources/hwang-et-al-2000-2/) - [Gentzis & Carvajal-Ortiz 2018-MDI](https://www.corelab.com/resources/gentzis-carvajal-ortiz-2018-mdi-2/) - [Carvajal-Ortiz and Pratt 2013-GCA](https://www.corelab.com/resources/carvajal-ortiz-and-pratt-2013-gca-2/) - [Carvajal-Ortiz & Pratt-2013-OG](https://www.corelab.com/resources/carvajal-ortiz-pratt-2013-og-2/) - [DECT_Report_W_UCS](https://www.corelab.com/resources/dect_report_w_ucs/) - [Mansour et al. 2022-Antrim Shale](https://www.corelab.com/resources/mansour-et-al-2022-antrim-shale/) - [Hackley et al-2020](https://www.corelab.com/resources/hackley-et-al-2020/) - [Gentzis et al.-2021](https://www.corelab.com/resources/gentzis-et-al-2021/) - [FUEL NMR relaxometry paper - Khatibi et al. (2019)](https://www.corelab.com/resources/fuel-nmr-relaxometry-paper-khatibi-et-al-2019/) - [Carvajal-Ortiz et al., 2021](https://www.corelab.com/resources/carvajal-ortiz-et-al-2021/) - [Carvajal-Ortiz et al. -URTeC-1005-2019](https://www.corelab.com/resources/carvajal-ortiz-et-al-urtec-1005-2019/) - [Carvajal-Ortiz and Gentzis- 2018](https://www.corelab.com/resources/carvajal-ortiz-and-gentzis-2018/) - [Carvajal-Ortiz & Gentzis-2015](https://www.corelab.com/resources/carvajal-ortiz-gentzis-2015/) - [Argentina graptolite article IJCG (2021)](https://www.corelab.com/resources/argentina-graptolite-article-ijcg-2021/) - [Alexandridis et al. (2022) - Marine & Petroleum Geology](https://www.corelab.com/resources/alexandridis-et-al-2022-marine-petroleum-geology/) - [Abarghanietal.2019-Tmax and Organic petrography-Bakken](https://www.corelab.com/resources/abarghanietal-2019-tmax-and-organic-petrography-bakken/) - [Using_gas_geochemistry_to_delineate_stru (1)](https://www.corelab.com/resources/using_gas_geochemistry_to_delineate_stru-1/) - [Ocubalidet et al., 2020](https://www.corelab.com/resources/ocubalidet-et-al-2020/) - [Milkov-Shale Gas-2020](https://www.corelab.com/resources/milkov-shale-gas-2020/) - [Milkov, 2021](https://www.corelab.com/resources/milkov-2021/) - [McCaffrey 1996 Cymric](https://www.corelab.com/resources/mccaffrey-1996-cymric/) - [Hwang et al 2000](https://www.corelab.com/resources/hwang-et-al-2000/) - [Gentzis & Carvajal-Ortiz 2018-MDI](https://www.corelab.com/resources/gentzis-carvajal-ortiz-2018-mdi/) - [Carvajal-Ortiz and Pratt 2013-GCA](https://www.corelab.com/resources/carvajal-ortiz-and-pratt-2013-gca/) - [Carvajal-Ortiz & Pratt-2013-OG](https://www.corelab.com/resources/carvajal-ortiz-pratt-2013-og/) - [Testing relationship](https://www.corelab.com/resources/testing-relationship/) ## Services - [SPECTRASTIM™](https://www.corelab.com/services/spectrastim/) - [Geothermal](https://www.corelab.com/services/geothermal/) - Explore geothermal reservoir characterization from Core Lab, delivering analysis, modeling, and performance optimization. - [Carbon Capture](https://www.corelab.com/services/carbon-capture/) - Carbon Storage Services Core Laboratories utilizes proprietary technologies to provide insights into storage capacity and seal integrity, helping clients identify and optimize CO2 storage sites. Core Lab can also provide quality and quantity measurements with certification for the midstream and downstream portions of the CCS value chain, providing critical assurance services for transported and stored - [Proppant Evaluation](https://www.corelab.com/services/proppant-evaluation/) - A World Leader in Analysis of Proppant for Hydraulic Fracturing and Gravel-Pack Operations Stim-Lab has a wealth of experience evaluating the physical properties of proppant delivered to the well site, including on-going conductivity research through the Consortium. Conductivity The long-term conductivity of a proppant is determined between either standard lab core (Ohio Sandstone and Bandera - [INVASION PROFILER™](https://www.corelab.com/services/invasion-profiler/) - Reduce subsurface uncertainty by measuring drilling mud invasion and correcting core fluid saturations for reliable reservoir analysis. - [Frac Optimization](https://www.corelab.com/services/frac-optimization/) - Advanced frac modeling, completion diagnostics, and production modeling help optimize completions and reduce subsurface uncertainty. - [Petrophysical Modeling](https://www.corelab.com/services/petrophysical-modeling/) - Advanced petrophysical modeling integrates core and log data to support exploration, development planning, and accurate reservoir evaluation. - [Stim-Lab Consortium](https://www.corelab.com/services/consortium/) - Evaluating Fracture Conductivity: The Impact of Proppants, Reservoir Properties, and Fracturing Fluids Now in it's 39th year, the Stim-Lab Consortium: Describes and predicts the behavior of proppants under realistic downhole conditions. 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Production Profiling Capabilities Comprised of multiple memory based sensors used to measure producing fluid properties and velocities, COMPLETION PROFILER® is extremely effective in: Quantifying Multi-Phase Production down to the - [SPECTRAMARK™](https://www.corelab.com/services/spectramark/) - Precise Depth Correlation to Enhance Safety, Increase Reliability, and Reduce Costs SPECTRAMARK™ is a permanent cobalt wire depth correlation marker for casing and wellbore hardware. Whether correlating flush joint casing, non-magnetic tubulars or multiple strings, SPECTRAMARK™ provides advantages for a wide range of applications, including: Collar Marking Non-Magnetic Tubular Equipment Marking Compaction Monitoring Depth Correlation - [AI Petrophysical Tool](https://www.corelab.com/services/advanced-rock-typingtm/) - Digital Rock Characterization Core Predict™ Artificial Intelligence (AI) tool that searches global rock catalog for physically measured analog data quickly and efficiently. By using RAPIDZoom™ high-resolution thin section images of cuttings, small-volume core samples, and/or sidewall core samples, Core Predict™ quickly finds and ranks analog matches, returning data sets that include physically measured petrophysical and - [FLOWPROFILER™ Gas](https://www.corelab.com/services/flowprofiler-gas/) - Profiling Hydrocarbon Production and Communication Over Time FLOWPROFILER® Gas tracers are specifically designed for multi-stage completions in both vertical and horizontal well applications. Gas tracers injected along with the proppant for each traced segment are sampled to profile treatment well production and offset communication. Common Applications Stage Contribution A/B Testing Effects of Geologic Features Depletion - [Biofuel Testing](https://www.corelab.com/services/biofuel-testing/) - Biofuel Testing Services In response to the growth of the biofuels market, Saybolt offers testing services to all aspects of the biofuel supply chain. 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Their distributions help interpret factors like organic matter type, deposition environmental conditions, lithology, thermal maturity, and in-reservoir biodegradation. Exploration Geochemistry Oil inversions and correlations between oil, gas, and source rocks using biomarker and - [Production and Analytical Chemistry](https://www.corelab.com/services/production-and-analytical-chemistry/) - Chemistry Production and Analytical Chemistry Water Analysis Physical and chemical properties of atmospheric formation water, seawater, and produced water for water injection, disposal, and compatibility. Crude Oil and Condensates Physical and chemical properties of atmospheric crude oil and condensate for crude valuation, refinery processing, transportation, and to understand potential flow assurance issues. Mercury Analysis Mercury can - [Flow Assurance](https://www.corelab.com/services/flow-assurance/) - Advanced Flow Assurance Asphaltenes Isothermal depressurization, titration, particle size distributions and solids onset determinations experiments with visual and Near-Infrared (NIR) detection systems provide insight into the conditions at which asphaltenes will flocculate. Waxes Determination of wax appearance temperature (WAT) and wax dissolution temperature through various tests based on the sample type. Determination of WAT can - [Relative Permeability](https://www.corelab.com/services/relative-permeability/) - Flow Studies Relative Permeability Our team can provide the proper sample restoration and relative permeability protocol to provide accurate data for reservoir simulators inputs. Steady State Co-injection of two (or more) immiscible fluids at various fractional flows until steady state equilibrium is achieved. Saturations are determined using in-situ saturation monitoring (ISSM) and effective permeabilities for - [Fluid Sampling and On-Site Analyses](https://www.corelab.com/services/field-sampling-and-wellsite-services/) - Routine Fluid Sampling and On-Site Analyses Fluids Sampling Obtaining representative samples is a key step in any PVT and fluids characterization study. Our field sampling engineers and chemists are trained to collect subsurface, wellhead, separator, processing plant, and atmospheric samples. These pressurized and atmospheric samples are transported to the laboratory using certified and approved cylinders - [GoTrace™](https://www.corelab.com/services/gotrace/) - Cluster Level Resolution Uniquely profile flowback and hydrocarbon production in each cluster of your completion design. Energetic Assisted Diagnostics Aid in the initiation and propagation of fractures in toe stages while eliminating the need for acid spearheads. New Diagnostic Applications Examples include wells with new perforations that cannot be isolated, such as refracs, or wells - [RAPID™Analytics](https://www.corelab.com/services/rapid-analytics/) - Rapid™Analytics Building upon the data hosted within RAPID™, RAPID™Analytics streamlines the process of data exploration by minimizing the time required for searching and formatting. It provides an efficient and effective method to navigate through extensive geological, engineering, and petrophysical datasets which allows for faster insights and better-informed decision-making By seamlessly integrating the TIBCO Spotfire Enterprise - [Oil Spill Characterisation](https://www.corelab.com/services/oil-spil-characterisation/) - Oil Spill Characterisation The comprehensive solution for assessing and managing oil spills! When an oil spill occurs, quick and efficient response is critical to minimize damage to the environment and surrounding communities. 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We provide, for agricultural, energy, and M&M commodities: Ad hoc inventory checks Stocks monitoring (continuous or recurring) Inspections, audits, and due diligence of storage - [Agri Testing](https://www.corelab.com/services/agri-testing/) - Your accredited partner We operate a growing network of fifteen laboratories dedicated to agricultural products, all strategically located in key markets, and counting with the required recognitions and accreditations. Our focus is to assist you in taking the right on-the-spot decisions about the product you trade. We achieve this by delivering accurate results on commercial - [PACKSCAN®](https://www.corelab.com/services/packscan/) - Simultaneously Evaluate Frac Placement and Annular Pack Quality PACKSCAN® is a memory gamma-density logging service designed primarily for offshore operations. Combined with SPECTRASCAN®, it is the industry’s only tool capable of simultaneously evaluating the frac placement and annular pack quality in frac pack completions. PACKSCAN® is also used in conventional sand control gravel pack operations - [SPECTRASCAN®](https://www.corelab.com/services/spectrascan/) - Identify and Precisely Determine Near-Wellbore Proppant Placement SPECTRASCAN® post-stimulation spectral gamma ray logging provides the only means to accurately pinpoint SPECTRASTIM™ traced proppant placement and refine completion procedures. Direct Measurements to Evaluate Uniform Proppant Placement Natural Fracture Identification Proppant Communication Plug Integrity/Sleeve effectiveness Gravel and Frac Pack Treatments Perforation Efficiency Treatment Uniformity Evaluation: proppant tracers - [Benchmarking](https://www.corelab.com/services/benchmarking/) - Asset Evaluation Benchmarking Benchmarking against our extensive Joint Industry Project (JIP) data offers valuable insights to enhance your reservoir performance, pinpoint production limitations, and swiftly validate critical characteristics in a new field. Shale Quality Reservoir Index The Shale Quality Reservoir Index (SQRI) is a measure of the potential productivity of a mudstone reservoir. It is - [Formation Damage](https://www.corelab.com/services/formation-damage/) - Flow Studies Formation Damage Chemical and thermodynamic reactions that cause formation damage are a major contributor to unexpected declines in productivity or injectivity in most reservoirs. Understanding the damage mechanisms and testing mitigation techniques can optimize well operations. Capillary Suction Time/Roller Oven Fluid sensitivity screening designed to provide an indication of clay swelling associated with - [Dual Energy CT](https://www.corelab.com/services/dual-energy-ct/) - Digital Rock Dual Energy CT Applications Empirically derived reservoir characterization data using high-frequency CT to enhance core analytical programs. 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Spectral Gamma Depth shift the - [Micro CT Sample Screening](https://www.corelab.com/services/microscansm/) - DIgital rock characterization MicroScan℠ Improved Sample Screening Minor defects, such as microfractures, can be hard to detect with a Macro CT scan and have a major impact on advanced core studies. MicroScan℠ offers high-resolution visualizations that help screen for microfractures and ensure that representative samples are used for testing. MicroScan℠ Viewer Interact with 3D MicroScan℠ - [PVT](https://www.corelab.com/services/phase-behavior-and-pvt/) - PVT Analysis Pressure-Volume-Temperature (PVT) measurements are essential for understanding the phase behavior and fluid properties of gases and liquids at various reservoir conditions. PVT analysis plays a critical role in reservoir management and production optimization and provides valuable data for reservoir simulation models, which help predict how reservoir fluids will behave during production. Fluid Types - [Sample Storage](https://www.corelab.com/services/sample-storage/) - Sample Storage Customized sample storage facilities that comply with local safety and fire standards and internal QAHSE procedures allow for easy tracking and retrieval. All sample details are logged into a customized database which provides real-time details on sample location, as well as a complete record of sample history and volumes. Storage solutions are available - [Compositional Analysis](https://www.corelab.com/services/compositional-analysis/) - Compositional Analysis Gas and Liquid Compositional analysis of gases by GPA2286 and atmospheric liquids to C36+ using proprietary methodology. Drilling Mud Contamination Determine the level of contamination of oil-base mud in the stock tank liquid through gas chromatography analysis of reservoir fluid and mud filtrate. Fingerprinting Aids in determining the origin of sample of oil - [Geomechanics](https://www.corelab.com/services/geomechanics/) - Geomechanics Applications Hydraulic Fracture Design Assessment of in-situ stress, frac gradient, and tensile strength that can be utilized when planning hydraulic fracture programs. Wellbore Stability and Sand Control Understanding in-situ stress, compressive/shear strength, and deformation characteristics provides insights into formation failure conditions and determination of mud weight parameters. Dipole Sonic Log Calibration Correlation of dynamic - [Enhanced Oil Recovery](https://www.corelab.com/services/enhanced-oil-recovery-eor/) - Flow Studies Enhanced Oil Recovery Enhanced oil recovery (EOR) is a proven process that can increase the amount of recoverable oil through secondary or tertiary recovery methods. 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Core Slab The latest in non-destructive elemental testing, Core Lab’s CS-XRF can - [Sedimentology](https://www.corelab.com/services/sedimentology/) - GeoscienceS Sedimentology Interactive High-Res Slab Photography RAPIDZoom™ Slab displays detailed core images through an interactive web-based virtual viewer with annotation and measurement capabilities. Explore RAPIDZoom™ Slab Core Description Characterize lithology, sedimentary structures, bedding, fossils, and any other macro-features of the rock alongside well logs. Detailed core descriptions help identify depositional environments and reservoir geometry to pinpoint - [Petrology and Mineralogy](https://www.corelab.com/services/mineralogy/) - GeoSciences Petrology and Mineralogy Virtual Petrography Use RAPIDZoom™, a high-resolution thin section platform, to perform cloud-based petrography or access petrographic reports from any browser. View the entire thin section online at high magnification, annotate and measure features, and export report images. Grain-size measurements or advanced petrographic data such as Touchstone™ collected by expert in-house geoscientists - [Core Stabilization and Wellsite Logistics](https://www.corelab.com/services/wellsite-core-stabilization-services/) - WELLSITE SERVICES Core Stabilization and Wellsite Logistics Core Stabilization CoreSta™ is a proprietary epoxy stabilization technique for friable and unconsolidated core material that ensures stabilization in the liner. Core Freezing Full barrel freezing of unconsolidated or friable core at the wellsite. Real-time temperature monitoring ensures core remains in a frozen state for safe handling and - [Agri Inspections](https://www.corelab.com/services/agri-inspection/) - Port services Our agricultural commodities inspection services form a key component of the delicate mechanisms of agricultural commodities’ world trade. 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Time is of the essence during - [Special Calibrations](https://www.corelab.com/services/calibration-special/) - Additional Calibration Services In addition to developing volumetric charts for liquid inventory control, Saybolt offers additional compliance services including: Tank Damage Profile Diagrams API 2350 defines critical high level as the highest level in the tank that the product can reach without detrimental impacts to the floating roof and its mechanisms. The diagram includes the - [Quality Consultation](https://www.corelab.com/services/quality-consultation/) - Quality Consultation Are you struggling to maintain the quality of your products and services? Are you losing customers due to defective products or inefficient processes? We can help! Saybolt specializes in providing quality consultation services to businesses just like yours. Our team of experts has years of experience in the industry and can help you - [Mud Tracing Services](https://www.corelab.com/services/wellsite-mud-tracing-services/) - WELLSITE Mud Tracing Services Invasion™ Profiler Recommend for water and oil-based drilling fluids to measure and correct for filtrate invasion in coring and drilling operations. The tracers can be used individually or simultaneously, and are injected into the mud system prior to coring or formation fluid sampling. Safe to transport, handle, store and dispose of - [LNG and LPG Loss Control](https://www.corelab.com/services/lng-lpg-loss-control/) - Be in Control with our Loss Control services We offer expert 24/7/365 testing and cargo inspection services for all stages of your LPG and LNG supply chain. With the increasing demand for LNG/LPG as a fuel for heating, running vehicles, and more, it's critical to ensure that your operational efficiencies are maintained. That's where we - [Humanitarian Aid](https://www.corelab.com/services/humanitarian-aid/) - Humanitarian Aid We understand the unique challenges involved in providing assistance in challenging environments and our experienced inspectors are dedicated to ensuring that your aid projects meet the highest standards of safety, quality and compliance. Our comprehensive inspection services cover all stages of the aid project, from procurement and transportation to installation and distribution. We - [Full Range Testing](https://www.corelab.com/services/full-range-testing/) - Full Range Testing We operate a world-wide network of analytical laboratories, many of them accredited according to ISO 17025. Through this network clients also have access to several competence centers in various parts of the world. Comprehensive Analytical Services Saybolt is a leading provider of independent analytical services, offering product testing services for a broad - [Fluid and Gas Geochemistry](https://www.corelab.com/services/fluid-and-gas-geochemistry/) - Geological Sciences Gas Stable Isotope Geochemistry Gas Origin Reducing risk depends on finding a trap and determining the probability that migrating petroleum from a mature source rock into a trap has not escaped or is not destroyed. The chemical and isotopic composition of natural gas allows a clear genetic distinction between biogenic (microbial) and thermogenic - [Cuttings](https://www.corelab.com/services/cuttings/) - Service>Cuttings - [D-Code™](https://www.corelab.com/services/d-codetm/) - Asset evaluation D-CodeTM The Key to Deciphering Any Well Decrease risk of wellbore instability, mud loss, and costly drilling and completion issues. Each of the following modeled outputs are available without any additional logs, tools or lab measurements. Young’s Modulus Poisson’s Ratio UCS Brittleness Formation Pressur Minimum Mud Weight from 0-90 Closure Pressure Fracture Pressure - [Conventional Rock Properties](https://www.corelab.com/services/basic-rock-properties/) - Petrophysics Conventional Rock Properties Conventional core analysis is the starting point for a wide range of geologic and engineering services provided by Core Laboratories. Over the years the line between what has historically been considered "conventional or routine" core analysis and more advanced analysis has blurred. The scientists, engineers and technicians at Core Laboratories in - [Crude Oil Assays](https://www.corelab.com/services/crude-oil-assays/) - Crude Oil Assays Our Crude Assay and Technical Centers are state- of-the-art and offer a wide range of crude oil assay facilities, allowing maximum yield evaluation and efficient refining decisions. We offer you versatile ways to determine the properties of crude oils and condensates. We are equipped to serve you with quality assessments on very - [Core Flow Evaluation](https://www.corelab.com/services/core-flow-evaluation/) - Custom designed Tests Simulate Down-Hole Applications as Closely as Possible Stim-Lab’s Core Flow Testing Group offers a broad range of services related to formation damage, completions, and stimulation. Whether it is testing to compare the damage created by different fracturing fluids or effectiveness of different acidizing packages, unbiased comparisons of different products allows the operator - [Completion Diagnostic Services](https://www.corelab.com/services/completion-diagnostic-services/) - Completion Diagnostic Services Send more oil and gas down the pipeline Deliver incremental production Reduce production costs ProTechnics' completion diagnostic services provide the most comprehensive line of imaging and tracing services supported by experts in the industry. Zonal Isolation Effective Lateral Length Assessment Geomechanical Correlation to Production Trends Parent/Child Well Interactions Seismicity Inflow Monitoring Refrac - [Blending](https://www.corelab.com/services/blending/) - The ability to create margins on fuel trading depends largely on optimal blending of components. In order to maximize your margins and to set your reputation by delivering excellent products, you need precise measuring data, sophisticated blending models and real-time field support. Reliable prediction We provide you with first class laboratory data and a reliable - [Bunkering](https://www.corelab.com/services/bunkering/) - Bunkering We understand the importance of efficient and reliable bunkering services to ensure that your vessel can operate smoothly and meet its operational requirements. With our worldwide network, we offer bunkering services that are available 24/7 to meet your needs. Our experienced team of inspectors is trained to provide a range of inspection services for - [Analytical Projects](https://www.corelab.com/services/analytical-projects/) - Special Projects The petroleum and chemical industries are constantly seeking ways to improve their efficiency, reduce downtime, and increase profits. However, analyzing the quality and condition of products can be time-consuming, costly, and challenging. We specialize in providing custom projects for petroleum and chemical analysis that can help businesses overcome these challenges Personalized Approach Our - [Arbitration Analysis](https://www.corelab.com/services/arbitration-analysis/) - Arbitration Analysis Arbitration on product analysis refers to a dispute resolution process where an independent third party, called an arbitrator, is appointed to make a binding decision on a dispute relating to the quality, safety, or compliance of a product. In the case of product analysis, the arbitration process usually involves the testing and analysis - [Analytical](https://www.corelab.com/services/analytical-2/) - Analytical Services Introducing our state-of-the-art laboratory services, available 24/7 to provide comprehensive testing solutions for the petroleum and chemical industries. Our team of highly skilled technicians and scientists are dedicated to delivering accurate, reliable and timely results for all your testing needs. As a leader in the industry, we understand that accurate and reliable laboratory - [Zonal Isolation](https://www.corelab.com/services/zonal-isolation/) - Effective zonal isolation is essential for ensuring optimal stimulated reservoir volume. Learn more about how diagnostics address these common challengesPlug Failures & Pipe Leakage | Cement Integrity & Rotating Casing Plug Failures Most operators acknowledge instances of plug failures, slips and leaks are common. According to analysis from the ProTechnics Global Technology Team though, 90% of ## Staff - [Martha Carnes](https://www.corelab.com/staff/martha-carnes/) - Experience and Career History Through the course of her career, Ms. Carnes has been responsible for leading the design and execution of the market and sector strategies, business development, compensation, professional development, succession planning, and client satisfaction. While at PwC, Ms. Carnes led the firm’s energy and mining assurance, tax, and advisory practices. She has - [Rob Martinovich](https://www.corelab.com/staff/rob-martinovich/) - Experience and Career History Mr. Martinovich retired from ONEOK as the Executive Vice President and Chief Administrative Officer. He started his ONEOK career in 2007 as President of ONEOK Partners' natural gas gathering and processing commercial and operations activities in the Mid-Continent and Rockies. During his 15-year tenure, he served in several executive leadership roles - [Curtis Anastasio](https://www.corelab.com/staff/monique-van-dijken-eeuwijk/) - Experience and Career History Mr. Anastasio began his career in the industry in 1988 with Ultramar plc, an integrated oil and gas company with assets principally in the United States, Canada, Latin America, the United Kingdom and Asia Pacific. Throughout his career, he has gained experience in various leadership positions in the upstream, midstream, and - [Harvey Klingensmith](https://www.corelab.com/staff/harvey-klingensmith/) - Experience and Career History Mr. Klingensmith retired from executive office in 2019 after numerous executive leadership positions in the oil and gas industry. Mr. Klingensmith co-founded and served as Chief Executive Officer and Board member of Ajax Resources LLC, serving as CEO from its founding in July 2015 until October 2017 and on the Board - [Katherine Murray](https://www.corelab.com/staff/katherine-murray/) - Experience and Career History Following a 33-year career serving the energy sector as a senior finance executive to large global corporations, Ms. Murray retired from executive office in 2018. Throughout her career, Ms. Murray has been responsible for financial reporting, operational accounting, financial planning, tax, and strategic planning. During her tenure at McDermott International, Inc., - [Mark D. Tattoli](https://www.corelab.com/staff/mark-d-tattoli/) - Experience and Career History Mr. Tattoli became Senior Vice President, Secretary and General Counsel on July 1, 2021, after serving as Assistant General Counsel since November 2012. Mr. Tattoli oversees all aspects of the Company’s legal and compliance matters. Mr. Tattoli has 20 years of industry experience acting as in-house counsel and outside counsel for - [Gwendolyn Y. Gresham](https://www.corelab.com/staff/gwendolyn-y-gresham/) - Experience and Career History Since 2016 Ms. Gresham has served as Senior Vice President, Corporate Development and Investor Relations, leading the Company’s Sustainability, Investor Relations, Risk Management, and Human Resources functions. Since joining the Company in October 2006, Ms. Gresham led the Company’s Human Resources and Sustainability efforts, as Corporate Vice President based in Amsterdam - [Christopher S. Hill](https://www.corelab.com/staff/christopher-s-hill/) - Experience and Career History Mr. Hill became Chief Financial Officer on May 24, 2018, after serving as Vice President, Chief Accounting Officer from May 2015 to May 2018. Since joining the Company in October 2006, Mr. Hill served in several roles including an overseas assignment based in the Netherlands while overseeing the Company’s global shared - [Kwaku Temeng](https://www.corelab.com/staff/kwaku-temeng/) - Experience and Career History Mr. Kwaku Temeng retired from Aramco Services Company (ASC) in Houston, Texas in May of 2021, where he served as Director of Upstream since 2007. During his tenure he was responsible for managing Saudi Aramco’s upstream technology and business programs in North America. These included cultivating business relationships, evaluating commercial opportunities, - [Lawrence V. Bruno](https://www.corelab.com/staff/lawrence-v-bruno/) - Experience and Career History Mr. Bruno became President of the Company on February 1, 2018, and on January 1, 2019, he also assumed the position of Chief Operating Officer. On May 20, 2020, Mr. Bruno succeeded Mr. David Demshur as the Chairman of the Supervisory Board and Chief Executive Officer and has led the Company’s ## Partners - [Freedom Service Dogs of America](https://www.corelab.com/partners/freedom-service-dogs-of-america/) - [PTSD Foundation of America](https://www.corelab.com/partners/ptds-foundation-of-america/) - [Recruit Military](https://www.corelab.com/partners/recruit-military/) - [Wreaths Across America Houston](https://www.corelab.com/partners/wreaths-across-america-houston/) - [Soldiers' Angels](https://www.corelab.com/partners/soldiers-angels/) ## Categories - [Core Lab Updates](https://www.corelab.com/category/core-lab-updates/) - [Investor News](https://www.corelab.com/category/investor-news/) - [Earnings Releases](https://www.corelab.com/category/investor-news/earnings-releases/) - [Dividend Announcements](https://www.corelab.com/category/investor-news/dividend-announcements/) - [Financial Reports](https://www.corelab.com/category/investor-news/financial-reports/) - [Press Releases](https://www.corelab.com/category/press-releases/) - [Annual Reports](https://www.corelab.com/category/investor-news/annual-reports/) - [SPE Papers](https://www.corelab.com/category/spe-papers/) - [Our Stories](https://www.corelab.com/category/core-lab-updates/our-stories/) ## Portfolio Categories - [Digital Rock Characterization](https://www.corelab.com/portfolio-category/digital-rock-characterization/) ## Locations - [North America](https://www.corelab.com/locations/north-america/) - [Africa & Middle East](https://www.corelab.com/locations/africa-middle-east/) - [Asia & Europe](https://www.corelab.com/locations/asia-europe/) - [South America](https://www.corelab.com/locations/south-america/) - [Global](https://www.corelab.com/locations/global/) - [Catalogs & Databases](https://www.corelab.com/locations/catalogs-databases/) - [Appalachian Basin](https://www.corelab.com/locations/appalachian-basin/) - [Mid-Continent](https://www.corelab.com/locations/mid-continent/) - [East Texas / Northern Louisiana / Southern Arkansas](https://www.corelab.com/locations/east-texas-northern-louisiana-southern-arkansas/) - [Permian Basin](https://www.corelab.com/locations/permian-basin/) - [Gulf of Mexico Offshore](https://www.corelab.com/locations/gulf-of-mexico-offshore/) - [Rocky Mountains](https://www.corelab.com/locations/rocky-mountains/) - [Gulf of Mexico Onshore](https://www.corelab.com/locations/gulf-of-mexico-onshore/) - [Unconventional Reservoirs](https://www.corelab.com/locations/unconventional-reservoirs/) - [West Coast](https://www.corelab.com/locations/west-coast/) - [Michigan Basin](https://www.corelab.com/locations/michigan-basin/) - [Western Canadian Sedimentary Basin](https://www.corelab.com/locations/western-canadian-sedimentary-basin/) ## Event type - [Webinar](https://www.corelab.com/event-type/webinar/) - [Conference](https://www.corelab.com/event-type/conference/) ## Event category - [Investors](https://www.corelab.com/event-category/investors/) ## Categories - [Reservoir](https://www.corelab.com/product-categories/reservoir/) - Reservoir evaluation is crucial for exploration, development, and production of oil and gas reservoirs, and for the assessment and optimization of carbon capture and storage (CCS) sites. - [Completions](https://www.corelab.com/product-categories/completions/) - Actionable insight to improve well performance, supported by more than 80 years of expertise in engineering and laboratory analytics. - [Production](https://www.corelab.com/product-categories/production/) - Core Laboratories’ data describing the reservoir system are used by engineers, geologists, and geophysicists worldwide to enhance hydrocarbon production so that it will exceed the 40% average oilfield recovery factor. The most effective means of enhancing production is controlling formation damage, the leading cause of underperforming wells worldwide. No one can do more than Core Laboratories to identify, remediate, and minimize the damage to producing formations that can occur during drilling and completion of a well. - [Instruments](https://www.corelab.com/product-categories/instruments/) - Core Lab Instruments, manufactures, and supplies a wide range of laboratory instrumentation for the petroleum industry. Designed with the benefit of Core Laboratories’ experience as the industry’s foremost provider of a broad range of research and laboratory testing services, these precision instruments are designed to address the industry’s most exacting requirements. We specialize in providing custom solutions to our clients’ experimental needs. - [Inspection](https://www.corelab.com/product-categories/inspections/) - Our fluids business focuses on crude oil and its derived products and operates under our trade name Saybolt. We service the energy industry with laboratory analyses, independent field inspections as well as monitoring and verification programs. While technological innovation has increased exponentially since we began offering our services in 1898, the basic principles of inspection remain constant: to provide swift, accurate and reliable data. Independence and Integrity are the unshakable cornerstones of our operations. - [Agri](https://www.corelab.com/product-categories/agri/) - For the past three decades, Saybolt has been offering the benefits of its 120+ year experience to an expanding base of agricultural commodities clients across products and geographies. We serve exporters, end-users, international trading companies, and food aid providers such as the World Food Programme. - [Biofuels](https://www.corelab.com/product-categories/biofuels/) - Biofuels require appropriate logistics chains and close montoring in the laboratory of key quality parameters. We help you with advice, field inspections and comprehensive testing facilities, enhanced by our digital platforms. If needed certificates related to Biogenic origin of fuels are issued by our specialized chemists. - [Crude Oil](https://www.corelab.com/product-categories/crude-oil/) - Our Crude Oil services incorporate crude oil quantity and quality measurement of samples sourced from ship and shore tanks, road and rail tank cars, pipeline operations, production platforms, in-line samplers and all other storage locations and operational facilities. - [Petroleum Products](https://www.corelab.com/product-categories/petroleum-products/) - We provide independent quantity and quality inspection of all types of refined products drawn from vessels, tanks, barges, shore tanks, rail cars, and all other bulk storage facilities to help you with loss control. - [Government & Institutional](https://www.corelab.com/product-categories/government-institutional/) - Independent inspection and monitoring is an important tool to optimise the results of any development program, humanitarian aid project, or commodity transaction. Independent inspection and monitoring is a key factor in accommodating the concerns regarding nutrition value, proper labeling, food quality and quantity. - [Marine Fuels](https://www.corelab.com/product-categories/marine-fuels/) - We can monitor your bunker deliveries by safeguarding the quantity and quality of bunker fuels delivered to your vessel in ports anywhere in the world. Our impartial surveys are internationally recognized, add value and are cost effective. All that is needed is one call to our marine contact desk in Rotterdam. - [LNG/LPG](https://www.corelab.com/product-categories/lng-lpg/) - We provide services to test Liquefied Petroleum Gas (LPG) and Liquefied Natural Gas (LNG) products from refineries, vessels and shore tank storage facilities. - [Analytical](https://www.corelab.com/product-categories/analytical/) - We operate a world-wide network of analytical laboratories, many of them accredited according to ISO 17025. Through this network clients also have access to several competence centers in various parts of the world. - [Calibration](https://www.corelab.com/product-categories/calibration/) - Our Saybolt Kalibra division performs professional and efficient measurements for tank calibrations with the utmost precision. - [Asset Evaluation](https://www.corelab.com/product-categories/asset-evaluation/) - For decades, Core Lab has been collecting and analyzing data from hundreds of conventional and unconventional reservoirs around the globe. Let our team of experienced geological and petrophysical experts reduce the risk associated with the exploration and development of hydrocarbons. We provide state of the art asset evaluation services. Backed by the largest petrophysical database in the world and unique reservoir modeling capabilities, we can quickly develop a rock-based petrophysical evaluation of your reservoir. - [Core Characterization](https://www.corelab.com/product-categories/core-characterization/) - Core analysis is a fundamental technique used in the energy industry to assess the potential of oil and gas reservoirs, design effective drilling and production strategies, evaluate commercial viability, and understand the scale of operations. It is also a critical tool for calibrating wireline logs, ensuring accurate data and reliable results. By examining rock core samples and determining properties such as porosity, permeability, mineralogy, and organic content, Core Lab can provide valuable insights that help mitigate risk and ensure the success of your operations. - [Fluid Characterization](https://www.corelab.com/product-categories/fluid-characterization/) - Core Lab Instruments (CLI) with the support of our Petroleum Services Business Unit has developed a line of testing equipment to evaluate the fluid properties of the petroleum within the reservoirs. Currently we offer testing equipment to measure the surface tension, interfacial tension, contact angle, and to visually inspect the fluids. As the testing program expands within Petroleum Services, we will continue to expand the product line for the measurement of petroleum liquid and gas. Each instrument we provide is pressure tested at 1.5 times the rated working pressure to ensure the product’s reliability, durability, and most importantly, the customer’s safety. With each instrument the client receives a copy of the test report along with an operation manual, assembly drawing and parts list. - [Joint Industry Projects](https://www.corelab.com/product-categories/joint-industry-projects/) - With over 100 regional studies performed throughout the world, Integrated Reservoir Solutions has expertise in your area of interest. Our rock catalogs make it possible to search for analogs when physically measured core data is lacking. When accessed through our RAPID database, multiple studies can be searched on multiple levels. We also offer analytical capability through RAPIDLink™ and Spotfire™, enabling you to quickly find and exploit petrophysical relationships. - [Digital Transformation](https://www.corelab.com/product-categories/digital-transformation/) - Core Laboratories has developed RAPID™, an innovative technology that makes data available in a timely fashion integrating multiple data sets into a coherent data package that is available at all times through our secure CoreClientWeb to our clients and their partners. - [Testing Solutions](https://www.corelab.com/product-categories/testing-solutions/) - [Completions Evaluation](https://www.corelab.com/product-categories/completions-evaluation/) - ProTechnics provides cutting edge completion diagnostic services that are accurate and proven, providing the information required to allow you to send more oil and gas down the pipeline, deliver incremental production, and reduce production costs. - [Perforation Design](https://www.corelab.com/product-categories/perforation-design/) - Since the year 2000 we have been certifying our products to the API RP-19B standards for oil well perforating systems. Adopting this practice in lieu of the previous API RP-43 standard did not come without a price. Others in our industry chose to continue with the old standard (API RP-43) and not update their performance data to the new standard for a number of reasons. The new standard, due to the target makeup, showed a reduction in penetration from the old standard (API RP-43) by as much as 20%. - [Perforating Technologies](https://www.corelab.com/product-categories/perforating-technologies/) - Maximizing productivity requires a gun system that can reach the desired depth through ID restrictions, that can correctly orient the perforating charges, and that leaves minimum debris in the well. Core Laboratories’ comprehensive gun systems like Casing Gun System, Through Tubing Gun System, and Oriented Perforating System are designed for all wellbores and all types of completions. - [Zonal Isolation](https://www.corelab.com/product-categories/zonal-isolation-old/) - Owen Oil Tools provides a wide selection of detonators and initiation devices for a multiple of different gun system applications ranging from cutter applications to detcord initiation. We take pride in the fact that all of our detonators exceed the API RP-67 safety requirements. Safety and reliability are some of the main focuses while incorporating a cost-effective initiation device suitable for the oilfield employee. - [Energetics](https://www.corelab.com/product-categories/energetics/) - To Maximize well-productivity our customers require both deployment of high-performance perforating charges and a streamlined supply chain system to reduce the cost of inventory. - [Completion Tools](https://www.corelab.com/product-categories/completion-tools/) - While the ability to perforate large intervals with a single perforating string can have many operational and commercial benefits, the cost of failure in a TCP operation can easily overshadow any upside. - [Owen Instrumentation](https://www.corelab.com/product-categories/owen-instrumentation/) - Designed and manufactured by Owen Instrumentation, the advanced Ballistics Delivery System (BDS) provides a unique range of perforating instruments and equipment developed to provide many advantages over existing technology. - [Enhanced Recovery](https://www.corelab.com/product-categories/eor-ior/) - [Pipe Recovery](https://www.corelab.com/product-categories/pipe-recovery/) - Pipe Recovery operations are usually an unwanted necessity and can be difficult with unforeseen problems at every turn. The Oilfield “Fisherman” is tasked with trying to recover the pipe quickly and efficiently. Core Laboratories provides the product of choice with downhole explosive and auxiliary equipment for Pipe Recovery. - [Propellant Systems](https://www.corelab.com/product-categories/propellant-systems/) - [Fluid Properties](https://www.corelab.com/product-categories/fluid-properties/) - [Rock Properties](https://www.corelab.com/product-categories/rock-properties/) - Routine Rock Properties instruments measure the properties of core samples, providing a physical model of reservoir characterization. The measured data are used to define storage capacity (porosity), the magnitude and distribution of flow capacity (permeablility), and fluid saturation, as well as lithology and other parameters. - [Pumps](https://www.corelab.com/product-categories/pumps/) - Volumetric pumps have been designed to find their place in any laboratory all over the world. Well known for their reliable piston, accuracy and resistance, these pumps can be used at any range of pressure, temperature or volume, with gas, liquid or even corrosive fluids. All our models can be adjusted following customer needs. - [Rock Mechanics](https://www.corelab.com/product-categories/rock-mechanics/) - With a strong and long-term partnership with well-known scientists, SANCHEZ TECHNOLOGIES has developed equipment able to reach such high conditions as temperature and pressure that no one can at this time even imagine. Ready and qualified, we are always looking for ways to improve results and quality for rock deformation studies, acoustic emission and measurement, porosity and permeability tests, seismic cycle or earthquake prevent. - [Extreme Conditions](https://www.corelab.com/product-categories/extreme-conditions/) - Specially dedicated to diamond anvil cells and Paris-Edinburgh press technologies, these equipments are the proof of SANCHEZ TECHNOLOGIES ability to adapt its know-how to different needs in scientific instruments. - [Testing Bench](https://www.corelab.com/product-categories/testing-bench/) - [Accessories](https://www.corelab.com/product-categories/accessories/) - [Production Profiling](https://www.corelab.com/product-categories/production-profling/) - [Energy Transition](https://www.corelab.com/product-categories/energy-transition/) - Core Lab is an industry leader in reservoir characterization, boasting decades of experience, with expertise that extends across a wide range of reservoir types. Whether it’s conventional oil and gas reservoirs, unconventional resources, or even carbon or hydrogen storage reservoirs, Core Lab’s proficiency in reservoir characterization allows our application of experience to any reservoir characterization project. ## Tags - [Water Tracer](https://www.corelab.com/tags/water-tracer/) - [Oil Tracer](https://www.corelab.com/tags/oil-tracer/) - [Proppant Tracer](https://www.corelab.com/tags/proppant-tracer/) - [Zonal Isolation](https://www.corelab.com/tags/zonal-isolation/) - [Proppant Placement](https://www.corelab.com/tags/proppant-placement/) - [Communication](https://www.corelab.com/tags/communication/) - [Sweep Efficiency](https://www.corelab.com/tags/sweep-efficiency/) - [Tracer Diagnostics](https://www.corelab.com/tags/tracer-diagnostics/) - [Completions](https://www.corelab.com/tags/completions/) - [Production](https://www.corelab.com/tags/production/) - [tracer injection](https://www.corelab.com/tags/tracer-injection/) - [fracing](https://www.corelab.com/tags/fracing/) - [refrac](https://www.corelab.com/tags/refrac/) - [flowback](https://www.corelab.com/tags/flowback/) - [conventional](https://www.corelab.com/tags/conventional/) - [shale](https://www.corelab.com/tags/shale/) - [injection](https://www.corelab.com/tags/injection/) - [Routine Rock Properties](https://www.corelab.com/tags/routine-rock-properties/) - [Advanced Rock Properties](https://www.corelab.com/tags/advanced-rock-properties/) - [Core Holders](https://www.corelab.com/tags/core-holders/) - [Drilling and Stimulation Properties](https://www.corelab.com/tags/drilling-and-stimulation-properties/) - [Instrument Accessories](https://www.corelab.com/tags/instrument-accessories/) - [Shale Oil/Gas Testing Equipment](https://www.corelab.com/tags/shale-oil-gas-testing-equipment/) - [University Training Equipment](https://www.corelab.com/tags/university-training-equipment/) - [PVT Studies](https://www.corelab.com/tags/pvt-studies/) - [Gasometry](https://www.corelab.com/tags/gasometry/) - [GOR](https://www.corelab.com/tags/gor/) - [Recombination](https://www.corelab.com/tags/recombination/) - [Viscosity](https://www.corelab.com/tags/viscosity/) - [Density](https://www.corelab.com/tags/density/) - [Sample Preparation](https://www.corelab.com/tags/sample-preparation/) - [Onfield Instruments](https://www.corelab.com/tags/onfield-instruments/) - [Special Fluid Analysis](https://www.corelab.com/tags/special-fluid-analysis/) - [Special Pumps](https://www.corelab.com/tags/special-pumps/) - [Stigma](https://www.corelab.com/tags/stigma/) - [Cube](https://www.corelab.com/tags/cube/) - [Torque Calibration & Testing](https://www.corelab.com/tags/torque-calibration-testing/) - [Force Calibration & Testing](https://www.corelab.com/tags/force-calibration-testing/) - [Sample Storage](https://www.corelab.com/tags/sample-storage/) - [Wellsite Services](https://www.corelab.com/tags/wellsite-services/) - [Field Sampling](https://www.corelab.com/tags/field-sampling/) - [Compositional Analysis](https://www.corelab.com/tags/compositional-analysis/) - [Flow Assurance](https://www.corelab.com/tags/flow-assurance/) - [Phase Behavior](https://www.corelab.com/tags/phase-behavior/) - [PVT](https://www.corelab.com/tags/pvt/) - [EOR](https://www.corelab.com/tags/eor/) - [Enhanced Oil Recovery](https://www.corelab.com/tags/enhanced-oil-recovery/) - [Production Chemistry](https://www.corelab.com/tags/production-chemistry/) - [Fluid Characterization](https://www.corelab.com/tags/fluid-characterization/) - [Core Analysis](https://www.corelab.com/tags/core-analysis/) - [Petrophysics](https://www.corelab.com/tags/petrophysics/) - [NMR](https://www.corelab.com/tags/nmr/) - [Electrical Properties](https://www.corelab.com/tags/electrical-properties/) - [Dielectric Permittivity](https://www.corelab.com/tags/dielectric-permittivity/) - [RwCore](https://www.corelab.com/tags/rwcore/) - [Capillary Pressure](https://www.corelab.com/tags/capillary-pressure/) - [Geomechanics](https://www.corelab.com/tags/geomechanics/) - [Routine Core Analysis](https://www.corelab.com/tags/routine-core-analysis/) - [Geochemistry](https://www.corelab.com/tags/geochemistry/) - [Petrophysical Modeling](https://www.corelab.com/tags/petrophysical-modeling/) - [Completions Evaluation](https://www.corelab.com/tags/completions-evaluation/) - [Cuttings](https://www.corelab.com/tags/cuttings/) - [PRISM](https://www.corelab.com/tags/prism/) - [ART™](https://www.corelab.com/tags/art/) - [RAPIDZoom™](https://www.corelab.com/tags/rapidzoom/) - [MicroCT](https://www.corelab.com/tags/microct/) - [RAPID](https://www.corelab.com/tags/rapid/) - [Fracture Analysis](https://www.corelab.com/tags/fracture-analysis/) - [NITRO(SM)](https://www.corelab.com/tags/nitrosm/) - [Special Core Analysis](https://www.corelab.com/tags/special-core-analysis/) - [Petroleum](https://www.corelab.com/tags/petroleum/) - [Chemical](https://www.corelab.com/tags/chemical/) - [Conductivity](https://www.corelab.com/tags/conductivity/) - [Proppant](https://www.corelab.com/tags/proppant/) - [Formation Damage](https://www.corelab.com/tags/formation-damage/) - [Completion Optimization](https://www.corelab.com/tags/completion-optimization/) - [SEM-Cathodoluminescence](https://www.corelab.com/tags/sem-cathodoluminescence/) - [RAPIDZoom(TM) Slab](https://www.corelab.com/tags/rapidzoomtm-slab/) - [Petrology](https://www.corelab.com/tags/petrology/) - [Chemostratigraphy](https://www.corelab.com/tags/chemostratigraphy/) - [Minearology](https://www.corelab.com/tags/minearology/) - [Fluid and Gas Geochem](https://www.corelab.com/tags/fluid-and-gas-geochem/) - [Thin Section Petrography](https://www.corelab.com/tags/thin-section-petrography/) - [and Mineralogy by XRD](https://www.corelab.com/tags/and-mineralogy-by-xrd/) - [Production Allocation](https://www.corelab.com/tags/production-allocation/) - [Continuous XRF](https://www.corelab.com/tags/continuous-xrf/) - [Advanced Rock Typing](https://www.corelab.com/tags/advanced-rock-typing/) - [Hardware](https://www.corelab.com/tags/hardware/) - [Interwell](https://www.corelab.com/tags/interwell/) - [Core Description](https://www.corelab.com/tags/core-description/) - [On-Site Instruments](https://www.corelab.com/tags/on-site-instruments/) - [Triaxial Press](https://www.corelab.com/tags/triaxial-press/) - [Extreme Conditions](https://www.corelab.com/tags/extreme-conditions/) - [Valves](https://www.corelab.com/tags/valves-2/) - [Accessories](https://www.corelab.com/tags/accessories/) ## Business Units - [Petroleum Services](https://www.corelab.com/business-units/petroleum-services/) - Petroleum Services is the world’s largest and most technologically advanced independent provider of reservoir fluid and petrophysical services to the oil and gas industry. We provide data and services that characterize the porous reservoir rock and all three reservoir fluids – gas, oil and water. - [Saybolt](https://www.corelab.com/business-units/saybolt/) - Our fluids business focuses on crude oil and its derived products and operates under our trade name Saybolt. We service the energy industry with laboratory analyses, independent field inspections as well as monitoring and verification programs. - [ProTechnics](https://www.corelab.com/business-units/protechnics/) - Access to the most rock and diagnostic data in the industry. ProTechnics is leveraging regional knowledge to address industry challenges and guide better decisions. - [Owen Oil Tools](https://www.corelab.com/business-units/owen-oil-tools/) - Owen Oil Tools manufactures and distributes the industry’s most comprehensive line of advanced perforating systems focused on improving our customer’s return on investment. - [Stim-Lab](https://www.corelab.com/business-units/stim-lab/) ## Fiscal Year - [2015](https://www.corelab.com/fiscal-year/2015/) - [2016](https://www.corelab.com/fiscal-year/2016/) - [2017](https://www.corelab.com/fiscal-year/2017/) - [2018](https://www.corelab.com/fiscal-year/2018/) - [2019](https://www.corelab.com/fiscal-year/2019/) - [2020](https://www.corelab.com/fiscal-year/2020/) - [2021](https://www.corelab.com/fiscal-year/2021/) - [2022](https://www.corelab.com/fiscal-year/2022/) - [2023](https://www.corelab.com/fiscal-year/2023/) - [2024](https://www.corelab.com/fiscal-year/2024/) - [2025](https://www.corelab.com/fiscal-year/2025/) - [2014](https://www.corelab.com/fiscal-year/2014/) - [2013](https://www.corelab.com/fiscal-year/2013/) - [2012](https://www.corelab.com/fiscal-year/2012/) - [2011](https://www.corelab.com/fiscal-year/2011/) - [2010](https://www.corelab.com/fiscal-year/2010/) - [2009](https://www.corelab.com/fiscal-year/2009/) - [2008](https://www.corelab.com/fiscal-year/2008/) - [2007](https://www.corelab.com/fiscal-year/2007/) - [2006](https://www.corelab.com/fiscal-year/2006/) - [2005](https://www.corelab.com/fiscal-year/2005/) - [2004](https://www.corelab.com/fiscal-year/2004/) - [2026](https://www.corelab.com/fiscal-year/2026/) ## Staff Categories - [Executive Team](https://www.corelab.com/staff-categories/executive/) - [Board of Directors](https://www.corelab.com/staff-categories/board/) - [CEO](https://www.corelab.com/staff-categories/ceo/) ## Partner categories - [Military](https://www.corelab.com/partner-categories/military/)