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High-Order Methods for Computational Physics Paperback - 2012
by Timothy J. Barth (Editor); Herman Deconinck (Editor)
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From the publisher
From the rear cover
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.
Details
- Title High-Order Methods for Computational Physics
- Author Timothy J. Barth (Editor); Herman Deconinck (Editor)
- Binding Paperback
- Pages 587
- Volumes 1
- Language ENG
- Publisher Springer
- Publication date 2012-12-06
- Illustrated Yes
- Features Illustrated
- ISBN 9783662038840 / 3662038846
- Weight 1.82 lbs (0.83 kg)
- Dimensions 9.21 x 6.14 x 1.21 in (23.39 x 15.60 x 3.07 cm)
- Category Gardening / Horticulture
- Dewey Decimal Code 006.3
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