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Numerical Simulation in Hydraulic Fracturing: Multiphysics Theory and Applications (Multiphysics Modeling)

By: William Standifird (Author) , Xinpu Shen (Author)

Extended Catalogue

Ksh 41,800.00

Format: Hardback or Cased Book

ISBN-10: 1138029629

ISBN-13: 9781138029620

Collection / Series: Multiphysics Modeling

Collection Type: Publisher collection

Publisher: Taylor & Francis Ltd

Imprint: CRC Press

Country of Manufacture: GB

Country of Publication: GB

Publication Date: Mar 16th, 2017

Publication Status: Active

Product extent: 192 Pages

Weight: 552.00 grams

Dimensions (height x width x thickness): 18.10 x 25.40 x 1.50 cms

Product Classification / Subject(s): Gas technology
Mining technology & engineering

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Hydraulic fracturing is not only a key technology in the development of unconventional oil and gas resources such as shale gas etc, but also a key technology and essential contents in the design of drilling cuttings disposal by the way of reinjection. Multiphysics modeling provides an effective and practical tool for 3-dimensional (3-D) modeling of hydraulic fracturing in the petroleum industry. This book introduces the theory and numerical applications of multiphysics modeling in hydraulic fracturing.
This book can also be used as a course reference book by graduate students majoring in solid mechanics and petroleum engineering, as well as for geotechnical engineers.

The expansion of unconventional petroleum resources in the recent decade and the rapid development of computational technology have provided the opportunity to develop and apply 3D numerical modeling technology to simulate the hydraulic fracturing of shale and tight sand formations. This book presents 3D numerical modeling technologies for hydraulic fracturing developed in recent years, and introduces solutions to various 3D geomechanical problems related to hydraulic fracturing. In the solution processes of the case studies included in the book, fully coupled multi-physics modeling has been adopted, along with innovative computational techniques, such as submodeling.
In practice, hydraulic fracturing is an essential project component in shale gas/oil development and tight sand oil, and provides an essential measure in the process of drilling cuttings reinjection (CRI). It is also an essential measure for widened mud weight window (MWW) when drilling through naturally fractured formations; the process of hydraulic plugging is a typical application of hydraulic fracturing. 3D modeling and numerical analysis of hydraulic fracturing is essential for the successful development of tight oil/gas formations: it provides accurate solutions for optimized stage intervals in a multistage fracking job. It also provides optimized well-spacing for the design of zipper-frac wells.
Numerical estimation of casing integrity under stimulation injection in the hydraulic fracturing process is one of major concerns in the successful development of unconventional resources. This topic is also investigated numerically in this book. Numerical solutions to several other typical geomechanics problems related to hydraulic fracturing, such as fluid migration caused by fault reactivation and seismic activities, are also presented.
This book can be used as a reference textbook to petroleum, geotechnical and geothermal engineers, to senior undergraduate, graduate and postgraduate students, and to geologists, hydrogeologists, geophysicists and applied mathematicians working in this field. This book is also a synthetic compendium of both the fundamentals and some of the most advanced aspects of hydraulic fracturing technology.


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