Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and Induced Seismicity. Mark D. Zoback, Arjun H. Kohli
Unconventional-Reservoir.pdf
ISBN: 9781107087071 | 400 pages | 10 Mb
- Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and Induced Seismicity
- Mark D. Zoback, Arjun H. Kohli
- Page: 400
- Format: pdf, ePub, fb2, mobi
- ISBN: 9781107087071
- Publisher: Cambridge University Press
Download free ebooks google books Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and Induced Seismicity (English Edition)
Since the beginning of the US shale gas revolution in 2005, the development of unconventional oil and gas resources has gathered tremendous pace around the world. This book provides a comprehensive overview of the key geologic, geophysical, and engineering principles that govern the development of unconventional reservoirs. The book begins with a detailed characterization of unconventional reservoir rocks: their composition and microstructure, mechanical properties, and the processes controlling fault slip and fluid flow. A discussion of geomechanical principles follows, including the state of stress, pore pressure, and the importance of fractures and faults. After reviewing the fundamentals of horizontal drilling, multi-stage hydraulic fracturing, and stimulation of slip on pre-existing faults, the key factors impacting hydrocarbon production are explored. The final chapters cover environmental impacts and how to mitigate hazards associated with induced seismicity. This text provides an essential overview for students, researchers, and industry professionals interested in unconventional reservoirs.
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Unconventional Gas Technology Engagement Project Director . A Coupled Geomechanics and Fluid Flow Model for Induced Seismicity Prediction in Oil and Gas economically viable production from tight oil and gas shale reservoirs.
Unconventional Resources - Jackson School of Geosciences - The
effective production of unconventional hydrocarbon reservoirs such as shales, tight gas sands, and low-pressure gas. to porosity, permeability, and other petrophysical properties of oil and gas reservoirs; timing of modeling of fractured and compartmentalized reservoirs; reservoir geomechanics; induced seismicity;
Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and
Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and Induced Seismicity: Mark D. Zoback, Arjun H. Kohli: 9781107087071: Books - Amazon.ca.
The Importance of Slow Slip on Faults During Hydraulic Fracturing
Role of Fluid Injection Pressure in Inducing Seismicity .. Geomechanical Analysis and Reservoir Simulation for a Fractured Tight Gas Reservoir, Tarim Basin,
2 Understanding Induced Seismicity and Managing Risk | Onshore
Onshore Unconventional Hydrocarbon Development: Induced Seismicity and By 2009, the use of these technologies had expanded into tight oil-bearing rock vertical drilling techniques applied to 'conventional' oil and gas reservoirs. . kind of analysis has been put online to allow geomechanical analysis of a particular
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Results 1 - 16 of 924 Shale Oil and Gas Handbook: Theory, Technologies, and Challenges Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and Induced Seismicity. by Mark D. Zoback and Arjun H. Kohli. Hardcover.
Unconventional Reservoir Geomechanics - Mark D - Google Books
The book begins with a detailed characterization of unconventional reservoir rocks: impacts and how to mitigate hazards associated with induced seismicity. geomechanics with an emphasis on shale gas, tight gas and tight oil production.
Research | Stress and Crustal Mechanics Group
Effects of depletion and injection on conventional and unconventional reservoirs. Constrained geomechanical modeling of Marcellus shale gas reservoir rocks via gas/tight oil reservoirs including hydraulic fracturing, microseismicity, and Developing a better understanding of the physics of fluid-induced earthquakes.
Unconventional Reservoir Geomechanics - Mark D - Google Books
The book begins with a detailed characterization of unconventional reservoir rocks: impacts and how to mitigate hazards associated with induced seismicity. geomechanics with an emphasis on shale gas, tight gas and tight oil production.
Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and
Unconventional Reservoir Geomechanics: Shale Gas, Tight Oil, and Induced Seismicity. Other editions Hardcover, 400 pages. Expected please sign up. Be the first to ask a question about Unconventional Reservoir Geomechanics
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