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Finite Element Method in the Static and Dynamic Deformation and Consolidation of Porous Media

AUTHOR: R. W. Lewis
ISBN: 0471928097

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         Editorial Review

Finite Element Method in the Static and Dynamic Deformation and Consolidation of Porous Media
- Book Review,
by R. W. Lewis

From Book News, Inc.
Deals with numerical solutions of coupled thermo-hydro-mechanical problems in porous media. New to the second edition are numerical solutions for fully and partially saturated consolidation, subsidence analysis including far field boundary conditions, new case studies, and petroleum reservoir simulation. Governing equations have been newly derived in a general form using both averaging methods and an engineering approach. Book News, Inc.®, Portland, OR

Book Description
The Finite Element Method in the Static and Dynamic Deformation and Consolidation of Porous Media Second Edition Roland W. Lewis, University of Wales Swansea, UK Bernard A. Schrefler, University of Padua, Italy Following the highly successful first edition, this text deals with numerical solutions of coupled thermo-hydro-mechanical problems in porous media. Governing equations are newly derived in a general form using both averaging methods (hybrid mixture theory) and an engineering approach. Unique new features of the book include numerical solutions for fully and partially saturated consolidation, subsidence analysis including far field boundary conditions (Infinite Elements), new case studies and also petroleum reservoir simulation. Extended heat and mass transfer in partially saturated porous media, and consideration of phase change, are covered in detail. In addition, large strain, fully and partially saturated, soil dynamics problems are explained. Back analysis for consolidation problems is also included. Significantly, the reader is provided with access to a Finite Element code for coupled thermo-hydro-mechanical problems in partially saturated porous media with full two phase flow and phase change, written according to the theory outlined in the book and obtainable via the Network of the Italian Research Council (COMES). With a range of engineering applications from geotechnical and petroleum engineering through to bioengineering and materials science, this book represents an important resource for students, researchers and practising engineers in all these and related fields.

Book Info
Deals with numerical solutions of coupled thermohydro-mechanical problems in porous media. Includes numerical solutions for fully & partially saturated consolidation, subsidence analysis including far field boundary conditions (Infinite Elements), new case studies & also petroleum reservoir simulation. DLC: Porous materials Mathematical models.

Back Cover Copy
Following the highly successful first edition, this text deals with numerical solutions of coupled thermo-hydro-mechanical problems in porous media. Governing equations are newly derived in a general form using both averaging methods (hybrid mixture theory) and an engineering approach. Unique new features of the book include numerical solutions for fully and partially saturated consolidation, subsidence analysis including far field boundary conditions (Infinite Elements), new case studies and also petroleum reservoir simulation. Extended heat and mass transfer in partially saturated porous media, and consideration of phase change, are covered in detail. In addition, large strain, fully and partially saturated, soil dynamics problems are explained. Back analysis for consolidation problems is also included. Significantly, the reader is provided with access to a Finite Element code for coupled thermo-hydro-mechanical problems in partially saturated porous media with full two phase flow and phase change, written according to the theory outlined in the book and obtainable via the Network of the Italian Research Council (COMES). With a range of engineering applications from geotechnical and petroleum engineering through to bioengineering and materials science, this book represents an important resource for students, researchers and practising engineers in all these and related fields.


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         Book Review

Finite Element Method in the Static and Dynamic Deformation and Consolidation of Porous Media
- Book Reviews,
by R. W. Lewis

Finite Element Method in the Static and Dynamic Deformation and Consolidation of Porous Media

FROM THE PUBLISHER

The Finite Element Method in the Static and Dynamic Deformation and Consolidation of Porous Media Second Edition Roland W. Lewis, University of Wales Swansea, UK Bernard A. Schrefler, University of Padua, Italy Following the highly successful first edition, this text deals with numerical solutions of coupled thermo-hydro-mechanical problems in porous media. Governing equations are newly derived in a general form using both averaging methods (hybrid mixture theory) and an engineering approach. Unique new features of the book include numerical solutions for fully and partially saturated consolidation, subsidence analysis including far field boundary conditions (Infinite Elements), new case studies and also petroleum reservoir simulation. Extended heat and mass transfer in partially saturated porous media, and consideration of phase change, are covered in detail. In addition, large strain, fully and partially saturated, soil dynamics problems are explained. Back analysis for consolidation problems is also included. Significantly, the reader is provided with access to a Finite Element code for coupled thermo-hydro-mechanical problems in partially saturated porous media with full two phase flow and phase change, written according to the theory outlined in the book and obtainable via the Network of the Italian Research Council (COMES). With a range of engineering applications from geotechnical and petroleum engineering through to bioengineering and materials science, this book represents an important resource for students, researchers and practising engineers in all these and related fields.

FROM THE CRITICS

Booknews

Deals with numerical solutions of coupled thermo-hydro-mechanical problems in porous media. New to the second edition are numerical solutions for fully and partially saturated consolidation, subsidence analysis including far field boundary conditions, new case studies, and petroleum reservoir simulation. Governing equations have been newly derived in a general form using both averaging methods and an engineering approach. Annotation c. by Book News, Inc., Portland, Or.


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