Wave fields in real media : wave propagation in anisotropic, anelastic, and porous media /

This book examines the differences between an ideal and a real description of wave propagation, where ideal means an elastic (lossless), isotropic and single-phase medium, and real means an anelastic, anisotropic and multi-phase medium. The analysis starts by introducing the relevant stress-strain r...

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Bibliographic Details
Main Author: Carcione, José M.
Format: Electronic eBook
Language:English
Published: Amsterdam ; New York : Pergamon, 2001.
Edition:1st ed.
Series:Handbook of geophysical exploration. Seismic exploration ; v. 31.
Subjects:
Online Access:CONNECT

MARC

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245 1 0 |a Wave fields in real media :  |b wave propagation in anisotropic, anelastic, and porous media /  |c by José M. Carcione. 
250 |a 1st ed. 
260 |a Amsterdam ;  |a New York :  |b Pergamon,  |c 2001. 
300 |a 1 online resource (xxiii, 390 pages) :  |b illustrations 
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490 1 |a Seismic exploration,  |x 0950-1401 ;  |v v. 31 
504 |a Includes bibliographical references (pages 345-370) and indexes. 
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505 0 |a Front Cover; WAVE FIELDS IN REAL MEDIA: WAVE PROPAGATION IN ANISOTROPIC, ANELASTIC AND POROUS MEDIA; Copyright Page; Contents; Preface; Acknowledgments; About the author; Basic notation; Glossary of main symbols; Chapter 1. Anisotropic elastic media; Chapter 2. Viscoelasticity and wave propagation; Chapter 3. Isotropic anelastic media; Chapter 4. Anisotropic anelastic media; Chapter 5. The reciprocity principle; Chapter 6. Reflection and transmission of plane waves; Chapter 7. Biot's theory for porous media; Chapter 8. Numerical methods; Examinations; Chronology of main discoveries. 
520 |a This book examines the differences between an ideal and a real description of wave propagation, where ideal means an elastic (lossless), isotropic and single-phase medium, and real means an anelastic, anisotropic and multi-phase medium. The analysis starts by introducing the relevant stress-strain relation. This relation and the equations of momentum conservation are combined to give the equation of motion. The differential formulation is written in terms of memory variables, and Biot's theory is used to describe wave propagation in porous media. For each rheology, a plane-wave analysis is performed in order to understand the physics of wave propagation. The book contains a review of the main direct numerical methods for solving the equation of motion in the time and space domains. The emphasis is on geophysical applications for seismic exploration, but researchers in the fields of earthquake seismology, rock acoustics, and material science - including many branches of acoustics of fluids and solids - may also find this text useful. 
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776 0 8 |i Print version:  |a Carcione, José M.  |t Wave fields in real media.  |b 1st ed.  |d Amsterdam ; New York : Pergamon, 2001  |z 0080439292  |z 9780080439297  |w (DLC) 2001053098  |w (OCoLC)47922895 
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