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EFFICIENT ENTROPY STABLE GAUSS COLLOCATION METHODS

delete2019-01-01
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OA
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J
Jesse Chan *
D
David C. Del Rey Fernández
M
Mark H. Carpenter
DOI:10.1137/18M1209234delete
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Abstract

Abstract

En 中文
The construction of high order entropy stable collocation schemes on quadrilateral and hexahedral elements has relied on the use of Gauss-Legendre-Lobatto collocation points and their equivalence with summation-by-parts (SBP) finite difference operators. In this work, we show how to efficiently generalize the construction of semidiscretely entropy stable schemes on tensor product elements to Gauss points and generalized SBP operators. Numerical experiments suggest that the use of Gauss points significantly improves accuracy on curved meshes.
Keywords:
high order
discontinuous Galerkin
nonlinear conservation laws
entropy
hyperbolic
compressible Euler
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SIAM Journal on Scientific Computing cover
SIAM Journal on Scientific Computing
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Rice University
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national aeronautics & space administration (nasa)
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university of toronto
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