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首页> 外文期刊>Journal of Computational Physics >ZONAL EMBEDDED GRIDS FOR NUMERICAL SIMULATIONS OF WALL-BOUNDED TURBULENT FLOWS
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ZONAL EMBEDDED GRIDS FOR NUMERICAL SIMULATIONS OF WALL-BOUNDED TURBULENT FLOWS

机译:含壁湍流数值模拟的区域嵌入网格

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A B-spline based numerical method on a zonal embedded grid has been developed. The method is aimed at reducing the computational requirements for large eddy simulations (LES) and direct numerical simulations (DNS) of wall-bounded turbulent flows. The objective is to reduce the number of grid points required to resolve the near-wall eddies without placing a large number of grid points in the outer layers. DNS and LES calculations of a turbulent channel flow were performed on a grid with a zone near the wall that was refined in all three directions. The results from the zonal grid calculations show good agreement with previously published numerical and experimental results obtained for the same flow conditions. The zonal grid calculations required only a fraction of the CPU time required for the single zone grid calculation with the same near-wall grid density. in addition, the memory requirements for the zonal grid calculations are significantly reduced. (C) 1996 Academic Press, Inc. [References: 26]
机译:开发了一种基于B样条的区域嵌入式网格数值方法。该方法旨在减少对大涡流模拟(LES)和壁边界湍流的直接数值模拟(DNS)的计算要求。目的是减少解决近壁涡流所需的网格点数量,而无需在外层放置大量网格点。在一个网格上进行了湍流通道的DNS和LES计算,该网格的壁附近区域在所有三个方向上都经过了改进。纬向网格计算的结果与先前发布的在相同流动条件下获得的数值和实验结果吻合良好。在具有相同的近壁网格密度的情况下,分区网格计算仅需要单区域网格计算所需的CPU时间的一小部分。此外,显着减少了用于区域网格计算的内存需求。 (C)1996 Academic Press,Inc. [参考:26]

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