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首页> 外文期刊>Journal of Computational and Applied Mathematics >Simulation of planar ionization wave front propagation on an unstructured adaptive grid
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Simulation of planar ionization wave front propagation on an unstructured adaptive grid

机译:非结构化自适应网格上平面电离波前传播的仿真

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摘要

The paper deals with the numerical solution of a basic 2D model of the propagation of an ionization wave. The system of equations describing this propagation consists of a coupled set of reaction-diffusion-convection equations and a Poissons equation. The transport equations are solved by a finite volume method on an unstructured triangular adaptive grid. The upwind scheme and the diamond scheme are used for the discretization of the convection and diffusion fluxes, respectively. The Poisson equation is also discretized by the diamond scheme. Numerical results are presented. We deal in more detail with numerical tests of the grid adaptation technique and its influence on the numerical results. An original behavior is observed. The grid refinement is not sufficient to obtain accurate results for this particular phenomenon. Using a second order scheme for convection is necessary.
机译:本文讨论了电离波传播的基本二维模型的数值解。描述这种传播的方程组由一组反应扩散对流方程和一个泊松方程组成。在非结构化三角自适应网格上通过有限体积法求解了输运方程。顺风方案和菱形方案分别用于对流和扩散通量的离散化。泊松方程也通过菱形方案离散化。给出了数值结果。我们将更详细地讨论网格自适应技术的数值测试及其对数值结果的影响。观察到原始行为。网格细化不足以针对此特定现象获得准确的结果。对流必须使用二阶方案。

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