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PROGRESS WITH MULTIGRID SCHEMES FOR HYPERSONIC FLOW PROBLEMS

机译:超音速流动问题的多重网格方案的进展

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Several multigrid schemes are considered for the numerical computation of viscous hypersonic flows. For each scheme, the basic solution algorithm employs upwind spatial discretization with explicit multistage time stepping. Two-level Versions of the various multigrid algorithms ale applied to the two-dimensional advection equation, and Fourier analysis is used to determine their damping properties. The capabilities of the multigrid methods are assessed by solving three different hypersonic flow problems. Some new multigrid schemes based on semicoarsening strategies are shown to be quite effective in relieving the stiffness caused by the high-aspect-ratio cells required to resolve high Reynolds number flows. These schemes exhibit good convergence rates for Reynolds numbers up to 200 X 10(6) and Mach numbers up to 25. (C) 1995 Academic Press, Inc. [References: 32]
机译:粘性高超声速流的数值计算考虑了几种多重网格方案。对于每种方案,基本解决方案算法均采用具有明确的多级时间步长的迎风空间离散化技术。各种多重网格算法的两级版本必须应用于二维对流方程,并且使用傅立叶分析来确定其阻尼特性。通过解决三种不同的高超音速流动问题,可以评估多网格方法的功能。一些新的基于半粗化策略的多重网格方案被证明在减轻由解析高雷诺数流所需的高纵横比单元引起的刚度方面非常有效。这些方案对于高达200 X 10(6)的雷诺数和高达25的马赫数表现出良好的收敛速度。(C)1995 Academic Press,Inc. [参考:32]

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