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网格类型对流场计算效率和收敛性的影响
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V224

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国家自然科学基金(11402301);陕西省自然科学基础研究计划(2015JM1005)


A Study of Influence of Mesh Type on Fluid Computational Efficiency and Convergence
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    摘要:

    针对不同非结构网格类型对流场计算效率和收敛性的影响,在相同面网格尺寸和相同体网格单元数的前提下,比较分析了四面体、六面体和多面体网格剖分方法在CFD计算中计算效率和收敛性上的差异。结果表明:当面网格尺寸相同时,六面体网格的收敛性最好,同时计算所用时间和占用内存都最少,多面体网格收敛最快,计算效率上略低于六面体网格,四面体网格的计算效率和收敛精度最低;当体网格单元数相同时,六面体网格的收敛精度最高,四面体网格的稳定性好,多面体网格在与四面体网格收敛速度基本相当的同时,收敛精度更高,且收敛过程也比较平稳。综合比较,多面体网格在应用广度上优于另外2种网格。

    Abstract:

    In the view of the influence of different unstructured mesh types on the fluid calculation efficiency and convergence on premise of the same surface mesh size and body mesh unit number, the computational efficiency and convergence of tetrahedral mesh, hexahedral mesh and polyhedral mesh in CFD calculation are compared. The result shows that under the conditions of same surface mesh size, the convergence of hexahedral mesh is better than that of the others. Besides, the time and RAM for calculation of hexahedral mesh are less than that of the others. The convergence rate of polyhedral mesh is much better, but the computational efficiency of polyhedral mesh is a little lower than that of tetrahedral mesh. The computational efficiency and convergence of tetrahedral mesh is worse than that of the others. Under the conditions of body mesh unit number, the convergence precision of hexahedral mesh is better. The computational stability of tetrahedral mesh is better. For the convergence rate, polyhedral mesh is as well as tetrahedral mesh. Besides, the convergence precision and the computational stability of polyhedral mesh is much better. So the application range of polyhedral mesh is superior to the others in comprehensive comparison.

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王宁,苏新兵,马斌麟,冯浩洋.网格类型对流场计算效率和收敛性的影响[J].空军工程大学学报,2018,19(1):9-14

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  • 在线发布日期: 2018-03-06
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