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Numerical modelling and analysis of fluid flow and deformation of fractured rock masses / Xing Zhang and David J. Sanderson.

By: Contributor(s): Material type: TextTextPublication details: Amsterdam ; Boston : Pergamon, 2002.Edition: 1st edDescription: 1 online resource (xi, 288 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780080537863
  • 0080537863
Other title:
  • Numerical modeling and analysis of fluid flow and deformation of fractured rock masses
Subject(s): Genre/Form: Additional physical formats: Print version:: Numerical modelling and analysis of fluid flow and deformation of fractured rock masses.DDC classification:
  • 624.1/5132 22
LOC classification:
  • TA706 .Z45 2002eb
Online resources:
Contents:
Front Cover; Numerical Modelling and Analysis of Fluid Flow and Deformation of Fractured Rock Masses; Copyright Page; Preface; Contents; Chapter 1. Introduction to Modelling Deformation and Fluid Flow of Fractured Rock; Chapter 2. Modelling of Simple Rock Blocks; Chapter 3. Evaluation of 2-Dimensional Permeability Tensors; Chapter 4. Scaling of 2-D Permeability Tensors; Chapter 5. Percolation Behaviour of Fracture Networks; Chapter 6. Slip and Fluid Flow around An Extensional Fault; Chapter 7. Instability and Associated Localization of Deformation and Fluid Flow in Fractured Rocks.
Action note:
  • digitized 2010 HathiTrust Digital Library committed to preserve
Summary: Our understanding of the subsurface system of the earth is becoming increasingly more sophisticated both at the level of the behaviour of its components (solid, liquid and gas) as well as their variations in space and time. The implementation of coupled models is essential for the understanding of an increasing number of natural phenomena and in predicting human impact on these. The growing interest in the relation between fluid flow and deformation in subsurface rock systems that characterise the upper crust has led to increasingly specialized knowledge in many branches of earth sciences and.
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Includes bibliographical references (pages 261-275) and index.

Print version record.

Front Cover; Numerical Modelling and Analysis of Fluid Flow and Deformation of Fractured Rock Masses; Copyright Page; Preface; Contents; Chapter 1. Introduction to Modelling Deformation and Fluid Flow of Fractured Rock; Chapter 2. Modelling of Simple Rock Blocks; Chapter 3. Evaluation of 2-Dimensional Permeability Tensors; Chapter 4. Scaling of 2-D Permeability Tensors; Chapter 5. Percolation Behaviour of Fracture Networks; Chapter 6. Slip and Fluid Flow around An Extensional Fault; Chapter 7. Instability and Associated Localization of Deformation and Fluid Flow in Fractured Rocks.

Our understanding of the subsurface system of the earth is becoming increasingly more sophisticated both at the level of the behaviour of its components (solid, liquid and gas) as well as their variations in space and time. The implementation of coupled models is essential for the understanding of an increasing number of natural phenomena and in predicting human impact on these. The growing interest in the relation between fluid flow and deformation in subsurface rock systems that characterise the upper crust has led to increasingly specialized knowledge in many branches of earth sciences and.

Use copy Restrictions unspecified star MiAaHDL

Electronic reproduction. [Place of publication not identified] : HathiTrust Digital Library, 2010. MiAaHDL

Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002. MiAaHDL

http://purl.oclc.org/DLF/benchrepro0212

digitized 2010 HathiTrust Digital Library committed to preserve pda MiAaHDL

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