Boundary Element Analysis: Mathematical Aspects and Applications / Edition 1

Boundary Element Analysis: Mathematical Aspects and Applications / Edition 1

ISBN-10:
354047465X
ISBN-13:
9783540474654
Pub. Date:
02/21/2007
Publisher:
Springer Berlin Heidelberg

Hardcover

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Overview

Boundary Element Analysis: Mathematical Aspects and Applications / Edition 1

This volume contains eleven state of the art contributions on boundary integral equation and boundary element methods. Beside some historical and more analytical aspects in the formulation and analysis of boundary integral equations also modern fast boundary element methods are described and analyzed from a mathematical point of view. In addition, engineering and industrial applications of those methods are presented showing the ability of state of the art boundary element methods to solve challenging problems from different fields of applications.

This book is addressed to researchers, graduate students and practitioners working on and using boundary element methods. All contributions also show the great achievements of interdisciplinary research between mathematicians and engineers, with direct applications in industry.

Product Details

ISBN-13: 9783540474654
Publisher: Springer Berlin Heidelberg
Publication date: 02/21/2007
Series: Lecture Notes in Applied and Computational Mechanics , #29
Edition description: 2007
Pages: 354
Product dimensions: 6.10(w) x 9.25(h) x 0.03(d)

Table of Contents

Some Historical Remarks on the Positivity of Boundary Integral Operators.- Averaging Techniques for a Posteriori Error Control in Finite Element and Boundary Element Analysis.- Coupled Finite and Boundary Element Domain Decomposition Methods.- The hp-Version of the Boundary Element Method for the Lamé Equation in 3D.- Sparse Convolution Quadrature for Time Domain Boundary Integral Formulations of the Wave Equation by Cutoff and Panel-Clustering.- Fast Multipole Methods and Applications.- A Fast Boundary Integral Equation Method for Elastodynamics in Time Domain and Its Parallelisation.- FM-BEM and Topological Derivative Applied to Acoustic Inverse Scattering.- Boundary Element Methods for Eddy Current Computation.- Fast Boundary Element Methods in Computational Electromagnetism.- BEM-Based Simulations in Engineering Design.

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