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Higher-order numerical methods for transient wave equations
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Librairie Eyrolles - Paris 5e
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Higher-order numerical methods for transient wave equations

Higher-order numerical methods for transient wave equations

Gary C Cohen

348 pages, parution le 15/07/2001

Résumé

Solving efficiently the wave equations involved in modeling acoustic, elastic or electromagnetic wave propagation remains a challenge both for research and industry. To attack the problems coming from the propagative character of the solution, the author constructs higher-order numerical methods to reduce the size of the meshes, and consequently the time and space stepping, dramatically improving storage and computing times. This book surveys higher-order finite difference methods and develops various mass-lumped finite (also called spectral) element methods for the transient wave equations, and presents the most efficient methods, respecting both accuracy and stability for each sort of problem. A central role is played by the notion of the dispersion relation for analyzing the methods. The last chapter is devoted to unbounded domains which are modeled using perfectly matched layer (PML) techniques. Numerical examples are given.

Contents

  • Part I Basics Definitions and Properties
  • The Basic Equations
  • Functional Issues
  • Plane Wave Solutions
  • Part II Finite Difference Methods
  • Construction of The Schemes in Homogeneous Media
  • The Dispersion Relation
  • Stability of The Schemes
  • Numerical Dispersion and Anisotropy
  • Construction of the Schemes in Heterogeneous Media
  • Stability bu Energy Techniques
  • Reflection-Transmission Analysis
  • Part III Finite Element Methods
  • Mass-Lumping in 1D
  • Spectral Elements
  • Mass Lumped Mixed Formulations and Edge Elements
  • Modeling Unbounded Domains
  • Appendix Construction of o Général H(curl)-Conforming Transform
  • Bibliography
  • Index

Caractéristiques techniques

  PAPIER
Éditeur(s) Springer
Auteur(s) Gary C Cohen
Parution 15/07/2001
Nb. de pages 348
Format 16 x 24
Couverture Relié
Poids 666g
Intérieur Noir et Blanc
EAN13 9783540415985

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