Wellbore Stability and Integrity: Models and Case Studies for Oil and Gas, Geothermal, and CO2 Sequestration gives today’s engineers both the foundations and practical applications needed to mitigate common and future wellbore challenges. Organized into distinct parts, the book provides step-by-step instructions on how to model wellbore stability and integrity from fundamental elastic models before moving on to more advanced thermo-chemo-poro-elastic models. Dynamic loading and multiphase flow effects are also introduced as is a comprehensive comparison between analytical methods and numerical methods in modeling wellbore stability and integrity with recommendations for field applications of specific problems.
Lastly, the reference provides guidelines for researchers and engineers on future research developments that support the energy transition, such as in geothermal wellbores and CO2 storage capability. Supported by case studies throughout, this book delivers a critical tool for engineers to solve the future of wellbores.
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Dr. Meng is a postdoctoral researcher at Los Alamos National Laboratory. His research interests include wellbore stability and integrity, poroelasticity modeling, carbon sequestration, and machine learning. He holds a Ph.D. degree in Petroleum Engineering from The University of Tulsa, and bachelor and master degree in Petroleum Engineering from China University of Petroleum. He has authored and co-authored over 30 technical papers, filed 1 US patent, and delivered more than 10 presentations at international conferences or universities. He also serves as associate editor for Journal of Petroleum Science and Engineering, and a guest editor for Geofluids in 2020/2021, and a technical editor/reviewer for 28 prestigious journals.
Dr. Gao is currently an assistant professor at Southwest Petroleum University, China. He is a selected affiliate member of EMI Poromechanics Committee, ASCE. He was a research fellow at National University of Singapore. He holds a Ph.D. in petroleum engineering from the China University of Petroleum (Beijing). His research interests focus on Poromechanics, such as the wellbore stability analysis and Mandel-Cryer effect considering coupled thermo-hydro-mechanical-chemical processes for saturated or unsaturated porous media, and sand production prediction using the poro-plastic theory. He has authored and co-authored over 20 technical papers.
Dr. Zhang is a postdoctoral researcher at Missouri University of Science and Technology, where he obtained his PhD and master degrees in Petroleum Engineering. He earned his bachelor degree in Petroleum Engineering from China University of Petroleum (Beijing). He is a geomechanics researcher focusing on: (1) Full lifecycle evaluation of wellbore integrity under downhole conditions for oil & gas, CO2 sequestration, and geothermal wells. (2) Large-scale mechanical earth modeling. He has participated in 5 industry-related projects in wellbore integrity and geomechanics, authored and co-authored over 20 technical papers, and served as a guest editor for Advances in Geo-Energy Research since 2021.
Dr. Zhang is a geoscience advisor in SINOPEC TECH Houston. He Was Sr. Advisor at Hess and Staff Petrophysical Engineer at Royal Dutch Shell, Geomechanics Manager at Halliburton/KSI, USA. He has authored ~100 papers and 3 books with 3900+ citations. An author of highly cited papers in Petroleum Geomechanics, Pore Pressure and Wellbore Stability. His specialties include pore pressure & fracture gradient prediction; borehole stability, wellbore strengthening; in-situ stress, geomechanics & FEM modeling, HF rock mechanics. He is also:
• Author of a new book “Applied Petroleum Geomechanics”, published by Elsevier
• 25+ year world-wide experience in geomechanics/rock mechanics and pore pressure prediction.
• Associate Editor of Elsevier’s Journal of Petroleum Science and Engineering
• Foreign Member of Russian Academy of Natural Sciences.
• President of China University of Geosciences Alumni Association - Southern USA, 2011-2014.
A demand for better understanding on wellbore stability and integrity is increasing in the global energy market where traditional oil and gas well practices are extending to CO2 sequestration, geothermal, and offshore. A comprehensive understanding of modeling and failure analysis of wellbore systems is critical to serve the common oil and gas wellbore as well as future activities. Wellbore Stability and Integrity: Models and Case Studies for Oil and Gas, Geothermal, and CO2 Sequestration gives today’s engineers both the foundations and practical applications needed to mitigate common and future wellbore challenges.Organized into distinct parts, the authors start with problem-oriented and step-by-step instructions on how to model wellbore stability and integrity from fundamental elastic models before moving on to more advanced thermo-chemo-poro-elastic models. Dynamic loading and multiphase flow effects are also introduced. The authors then move to a comprehensive comparison between analytical methods and numerical methods in modeling wellbore stability and integrity with recommendations for field applications of specific problems. Last, the reference provides guidelines for researchers and engineers on future research developments that support the energy transition such as geothermal wellbores and CO2 storage capability. Supported by case studies throughout, Wellbore Stability and Integrity: Models and Case Studies for Oil and Gas, Geothermal, and CO2 Sequestration delivers a critical tool for engineers to solve the future of wellbores.
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Paperback. Condition: new. Paperback. Wellbore Stability and Integrity: Models and Case Studies for Oil and Gas, Geothermal, and CO2 Sequestration gives todays engineers both the foundations and practical applications needed to mitigate common and future wellbore challenges. Organized into distinct parts, the book provides step-by-step instructions on how to model wellbore stability and integrity from fundamental elastic models before moving on to more advanced thermo-chemo-poro-elastic models. Dynamic loading and multiphase flow effects are also introduced as is a comprehensive comparison between analytical methods and numerical methods in modeling wellbore stability and integrity with recommendations for field applications of specific problems.Lastly, the reference provides guidelines for researchers and engineers on future research developments that support the energy transition, such as in geothermal wellbores and CO2 storage capability. Supported by case studies throughout, this book delivers a critical tool for engineers to solve the future of wellbores. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9780323995863
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