A Subsonic-Well-Balanced Reconstruction Scheme for Shallow Water Flows
A Subsonic-Well-Balanced Reconstruction Scheme for Shallow Water Flows
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DOI:
10.1137/090758416
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发表时间:
2010-09
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影响因子:
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通讯作者:
F. Bouchut;T. M. D. Luna
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文献类型:
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作者:
F. Bouchut;T. M. D. Luna
We consider the Saint-Venant system for shallow water flows with nonflat bottom. In past years, efficient well-balanced methods have been proposed in order to well resolve solutions close to steady states at rest. Here we describe a strategy based on a local subsonic steady state reconstruction that allows one to derive a subsonic-well-balanced scheme, preserving exactly all the subsonic steady states. It generalizes the now well-known hydrostatic solver, and like the latter it preserves the nonnegativity of the water height and satisfies a semidiscrete entropy inequality. An application to the Euler-Poisson system is proposed.