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A positivity-preserving high order discontinuous Galerkin scheme for convection-diffusion equations

机译:用于对流扩散方程的阳性保留高阶不连续的Galerkin方案

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摘要

For constructing high order accurate positivity-preserving schemes for convection-diffusion equations, we construct a simple positivity-preserving diffusion flux. Discontinuous Galerkin (DG) schemes with such a positivity-preserving diffusion flux are nonlinear schemes, which can be regarded as a reduction of the high order positivity-preserving DG schemes for compressible Navier-Stokes equations in [1] to scalar diffusion operators. In this paper we focus on the local DG method to discuss how to apply such a flux. A limiter on the auxiliary variable for approximating the gradient of the solution must be used so that the diffusion flux is positivity-preserving in the sense that DG schemes with this flux satisfies a weak positivity property. Together with a positivity-preserving limiter, high order DG schemes with strong stability preserving time discretizations can be rendered positivity-preserving without losing conservation or high order accuracy for convection-diffusion problems with periodic boundary conditions or a special class of Dirichlet or Neumann boundary conditions. Numerical tests on a few parabolic equations and an application to modeling electrical discharges are shown to demonstrate the performance of this scheme. (C) 2018 Elsevier Inc. All rights reserved.
机译:为了构建用于对流扩散方程的高阶精确的阳性保留方案,我们构建了一种简单的阳性保留扩散通量。具有这种阳性保存扩散通量的不连续的Galerkin(DG)方案是非线性方案,其可以被认为是[1]中的可压缩Navier-Stokes方程的高阶阳性保存DG方案的减少。在本文中,我们专注于本地DG方法讨论如何应用此类通量。必须使用用于近似溶液梯度的辅助变量上的限制器,使得扩散通量是阳性保留的,其具有该助焊剂的DG方案满足弱阳性性能。与阳性保存限制器一起,具有强稳定性保存时间离散化的高阶DG方案可以使正性保持阳性保存,而不会损失节约或高阶准确性,用于对流扩散问题与周期性边界条件或特殊的Dirichlet或Neumann边界条件一起。几个抛物线方程的数值测试和用于建模电放电的应用,以证明该方案的性能。 (c)2018年Elsevier Inc.保留所有权利。

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