Dewey Class |
518 |
Title |
High-Order Methods for Computational Physics ([EBook] /) / edited by Timothy J. Barth, Herman Deconinck. |
Added Personal Name |
Barth, Timothy J. editor. |
Deconinck, Herman editor. |
Other name(s) |
SpringerLink (Online service) |
Publication |
Berlin, Heidelberg : : Springer Berlin Heidelberg : : Imprint: Springer, , 1999. |
Physical Details |
VII, 587 p. 176 illus. : online resource. |
Series |
Lecture Notes in Computational Science and Engineering 1439-7358 ; ; 9 |
ISBN |
9783662038826 |
Summary Note |
This book considers recent developments in very high-order accurate numerical discretization techniques for partial differential equations. Primary attention is given to the equations of computational fluid dynamics with additional consideration given to the Hamilton-Jacobi, Helmholtz, and elasticity equations. This book should be of particular relevance to those readers with an interest in numerical discretization techniques which generalize to very high-order accuracy. The volume consists of five articles prepared by leading specialists covering the following specific topics: high-order finite volume discretization via essentially non-oscillatory (ENO) and weighted essentially oscillatory (WENO) reconstruction, the discontinuous Galerkin method, the Galerkin least-squares method, spectral and $hp$-finite element methods, and the mortar finite element method. Implementational and efficiency issues associated with each method are discussed throughout the book.: |
Contents note |
High Order Approximations for Compressible Fluid Dynamics on Un structured and Cartesian Meshes -- Discontinuous Galerkin Methods for Convection-Dominated Problems -- Adaptive Spectral Element Methods for Turbulence and Transition -- hp-FEM for Fluid Flow Simulation -- High Order ENO and WENO Schemes for Computational Fluid Dynamics. |
System details note |
Online access to this digital book is restricted to subscription institutions through IP address (only for SISSA internal users) |
Internet Site |
http://dx.doi.org/10.1007/978-3-662-03882-6 |
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