A limitation of the hydrostatic reconstruction technique for Shallow Water equations

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A limitation of the hydrostatic reconstruction technique for Shallow Water equations

English version: Because of their capability to preserve steady-states, well-balanced schemes for Shallow Water equations are becoming popular. Among them, the hydrostatic reconstruction proposed in [1], coupled with a positive numerical flux, allows to verify important mathematical and physical properties like the positivity of the water height and, thus, to avoid unstabilities when dealing wi...

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We consider the numerical approximation of the shallow–water equations with non–flat topography. We introduce a new topography discretization that makes all schemes to be well–balanced and robust. At the discrepancy with the well–known hydrostatic reconstruction, the proposed numerical procedure does not involve any cut–off. Moreover, the obtained scheme is able to deal with dry areas. Several ...

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Efficient well-balanced hydrostatic upwind schemes for shallow-water equations

The proposed work concerns the numerical approximations of the shallow-water equations with varying topography. The main objective is to introduce an easy and systematic technique to enforce the well-balance property and to make the scheme able to deal with dry areas. To access such an issue, the derived numerical method is obtained by involving the free surface instead of the water height and ...

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A Fast and Stable Well-Balanced Scheme with Hydrostatic Reconstruction for Shallow Water Flows

We consider the Saint-Venant system for shallow water flows, with nonflat bottom. It is a hyperbolic system of conservation laws that approximately describes various geophysical flows, such as rivers, coastal areas, and oceans when completed with a Coriolis term, or granular flows when completed with friction. Numerical approximate solutions to this system may be generated using conservative fi...

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A Well-Balanced Reconstruction of Wet/Dry Fronts for the Shallow Water Equations

4 In this paper, we construct a well-balanced, positivity preserving finite volume scheme for the shallow water equations based 5 on a continuous, piecewise linear discretization of the bottom topography. The main new technique is a special reconstruction 6 of the flow variables in wet-dry cells, which is presented in this paper for the one dimensional case. We realize the new 7 reconstruction ...

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ژورنال

عنوان ژورنال: Comptes Rendus Mathematique

سال: 2012

ISSN: 1631-073X

DOI: 10.1016/j.crma.2012.08.004