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John Wiley & Sons Finite-Element Modelling of Unbounded Media Cover Dynamic unbounded medium-structure interactions occur in manyfields of engineering and physical scie.. Product #: 978-0-471-96134-5 Regular price: $307.48 $307.48 In Stock

Finite-Element Modelling of Unbounded Media

Wolf, John P. / Song, Chongmin

Cover

June 1996
350 Pages, Hardcover
Wiley & Sons Ltd

ISBN: 978-0-471-96134-5
John Wiley & Sons

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Dynamic unbounded medium-structure interactions occur in manyfields of engineering and physical science, such as wavepropagation in soil-structure and fluid-structure interactions,acoustics and electromagnetism and as diffusion in heat conductionand consolidation. This book presents three novel concepts, basedon the finite-element methodology, to model the unboundedmedium:

* The consistent infinitesimal finite-element cell method, aboundary finite-element procedure, requires the discretization ofthe structure-medium interface only and is exact in thefinite-element sense. It is applied to unbounded media governed bythe hyperbolic, parabolic and elliptic differentialequations.

* The damping-solvent extraction method permits the analysis of abounded medium only.

* The doubly-asymptotic multi-directional transmitting boundary isexact for the low- and high-frequency limits at preselected wavepropagation directions.

All concepts are explained using simple examples that the readercan follow step by step. A computer program of the consistentinfinitesimal finite-element cell method available on disk analysestwo- and three-dimensional unbounded and bounded media for thescalar and vector wave equations and the diffusion equation in thefrequency and time domains.

Partial table of contents:

SIMILARITY-BASED FORMULATION FOR UNIT-IMPULSE RESPONSE AND
DYNAMIC STIFFNESS.

Displacement, Velocity and Acceleration Unit-Impulse Response
with Dynamic Stiffness and Rational Approximation.

Forecasting Method.

Consistent Infinitesimal Finite-Element Cell Method Applied to
Bounded Medium.

DAMPING-SOLVENT EXTRACTION FOR DYNAMIC STIFFNESS AND INTERACTION
FORCE.

Fundamentals of Damping-Solvent Extraction Method.

DOUBLY-ASYMPTOTIC MULTI-DIRECTIONAL TRANSMITTING BOUNDARY.

Concept and Numerical Implementation of Doubly-Asymptotic
Multi-Directional Transmitting Boundary.

Accuracy and Modelling Procedure of Doubly-Asymptotic
Multi-Directional Transmitting Boundary.

Appendices.

References.

Index.
John P. Wolf is the author of Finite-Element Modelling of Unbounded Media, published by Wiley. Chongmin Song is the author of Finite-Element Modelling of Unbounded Media, published by Wiley.

J. P. Wolf, Swiss Federal Institute of Technology, Lausanne, Switzerland; C. Song, Swiss Federal Institute of Technology, Lausanne, Switzerland