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Extension of an explicit finite volume method to large time steps (CFL > 1): application to shallow water flows

机译:将显式有限体积方法扩展到大时间步长(CFL> 1):应用于浅水流

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In this work, the explicit First order upwind scheme is presented under a formalism that enables the extension of the methodology to large time steps. The number of cells in the stencil of the numerical scheme is related to the allowable size of the CFL number for numerical stability. It is shown how to increase both at the same time. The basic idea is proposed for a ID scalar equation and extended to ID and 2D non-linear systems with source terms. The importance of the kind of grid used is highlighted and the method is outlined for irregular grids. The good quality of the results is illustrated by means of several examples including shallow water flow test cases. The bed slope source terms are involved in the method through an upwind discretization. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:在这项工作中,在形式主义下提出了显式的一阶迎风方案,该方案使方法可以扩展到较大的时间步长。数值方案的模具中的单元数与CFL数的允许大小有关,以实现数值稳定性。它显示了如何同时增加两者。提出了ID标量方程的基本思想,并将其扩展到带有源项的ID和2D非线性系统。强调了所用网格类型的重要性,并对不规则网格概述了该方法。通过几个实例(包括浅水流动测试案例)说明了结果的良好质量。该方法通过逆风离散化来涉及床坡源术语。版权所有(c)2005 John Wiley&Sons,Ltd.

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