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Grid resolution and turbulent inflow boundary condition recommendations for NPARC calculations

机译:NPARC计算的网格分辨率和湍流入流边界条件建议

摘要

The effects of grid resolution and specification of turbulent inflow boundary conditions were examined using the NPARC code with the Baldwin-Lomax and Chien k-e turbulence models. Three benchmark turbulent test cases were calculated: two were wall bounded flows and the third was a compressible mixing layer. The wall bounded flows were essentially insensitive to axial grid density; however, the location of the first point off the wall had a substantial effect on flow solutions. It was determined that the first point off the wall must be in the laminar sublayer (y+ less than or equal to 5) for the entire boundary layer. For the compressible mixing layer cases, the axial grid density affected the capturing of oblique shock waves in the mixing region, but the overall mixing rate was not strongly dependent on grid resolution. In specifying the inflow turbulent boundary conditions, it was very important to match the boundary layer and momentum thicknesses of the two flows entering the mixing region; calculations obtained with smaller or no boundary layers resulted in substantially reduced mixing. The solutions were relatively insensitive to freestream turbulence level.
机译:使用NPARC代码以及Baldwin-Lomax和Chien k-e湍流模型,检查了网格分辨率和湍流入流边界条件规范的影响。计算了三个基准湍流测试用例:两个是壁流,第三个是可压缩的混合层。壁边界流对轴向网格密度基本不敏感;但是,离开壁的第一个点的位置对流动解决方案有很大影响。已确定,离开壁的第一个点必须在整个边界层的层状子层中(y +小于或等于5)。对于可压缩混合层的情况,轴向网格密度影响混合区域中斜向冲击波的捕获,但是总体混合速率与网格分辨率的依赖性并不强。在指定入流湍流边界条件时,匹配进入混合区域的两条流的边界层和动量厚度非常重要;用较小的边界层或没有边界层获得的计算结果大大减少了混合。这些解决方案对自由流湍流水平相对不敏感。

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