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Meshfree Methods for Partial Differential Equations

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Meshfree Methods for Partial Differential Equations Synopsis

Meshfree methods for the solution of partial differential equations gained much attention in recent years, not only in the engineering but also in the mathematics community. One of the reasons for this development is the fact that meshfree discretizations and particle models are often better suited to cope with geometric changes of the domain of interest, e.g. free surfaces and large deformations, than classical discretization techniques such as finite differences, finite elements or finite volumes. Another obvious advantage of meshfree discretizations is their independence of a mesh so that the costs of mesh generation are eliminated. Also, the treatment of time-dependent PDEs from a Lagrangian point of view and the coupling of particle models and continuous models gained enormous interest in recent years from a theoretical as well as from a practial point of view. This volume consists of articles which address the different meshfree methods (SPH, PUM, GFEM, EFGM, RKPM etc.) and their application in applied mathematics, physics and engineering.

About This Edition

ISBN: 9783540438915
Publication date:
Author: Michael Griebel, Marc A Schweitzer
Publisher: Springer an imprint of Springer Berlin Heidelberg
Format: Paperback
Pagination: 471 pages
Series: Lecture Notes in Computational Science and Engineering
Genres: Calculus and mathematical analysis
Differential calculus and equations
Numerical analysis
Maths for engineers