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Effective Computational Methods for Wave Propagation

By: John A. Ekaterinaris (Edited by) , Nikolaos A. Kampanis (Edited by) , Vassilios Dougalis (Edited by)

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Ksh 45,600.00

Format: Hardback or Cased Book

ISBN-10: 1584885688

ISBN-13: 9781584885689

Publisher: Taylor & Francis Inc

Imprint: Chapman & Hall/CRC

Country of Manufacture: US

Country of Publication: GB

Publication Date: Feb 25th, 2008

Publication Status: Active

Product extent: 706 Pages

Weight: 1133.00 grams

Product Classification / Subject(s): Classical mechanics

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Presents several modern, valuable computational methods used to describe wave propagation phenomena in selected areas of physics and technology. This book begins with the simulation of nonlinear dispersive waves from nonlinear optics and the theory and numerical analysis of Boussinesq systems.
Due to the increase in computational power and new discoveries in propagation phenomena for linear and nonlinear waves, the area of computational wave propagation has become more significant in recent years. Exploring the latest developments in the field, Effective Computational Methods for Wave Propagation presents several modern, valuable computational methods used to describe wave propagation phenomena in selected areas of physics and technology.

Featuring contributions from internationally known experts, the book is divided into four parts. It begins with the simulation of nonlinear dispersive waves from nonlinear optics and the theory and numerical analysis of Boussinesq systems. The next section focuses on computational approaches, including a finite element method and parabolic equation techniques, for mathematical models of underwater sound propagation and scattering. The book then offers a comprehensive introduction to modern numerical methods for time-dependent elastic wave propagation. The final part supplies an overview of high-order, low diffusion numerical methods for complex, compressible flows of aerodynamics.

Concentrating on physics and technology, this volume provides the necessary computational methods to effectively tackle the sources of problems that involve some type of wave motion.


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