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LES and RANS for turbulent flow over arrays of wall-mounted obstacles

机译:LEs和RaNs用于在壁挂障碍物阵列上的湍流

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摘要

Large-eddy simulation (LES) has been applied to calculate the turbulent flow over staggered wall-mounted cubes and staggered random arrays of obstacles with area density 25%, at Reynolds numbers between 5 × 10^3 and 5 10^6, based on the free stream velocity and the obstacle height. Re = 5 × 10^3 data were intensively validated against direct numerical simulation (DNS) results at the same Re and experimental data obtained in a boundary layer developing over an identical roughness and at a rather higher Re. The results collectively confirm that Reynolds number dependency is very weak, principally because the surface drag is predominantly form drag and the turbulence production process is at scales comparable to the roughness element sizes. LES is thus able to simulate turbulent flow over the urban-like obstacles at high Re with grids that would be far too coarse for adequate computation of corresponding smooth-wall flows. Comparison between LES and steady Reynolds-averaged Navier-Stokes (RANS) results are included, emphasising that the latter are inadequate, especially within the canopy region.
机译:应用大涡模拟(LES)来计算基于5×10 ^ 3到5 10 ^ 6的雷诺数时,交错排列的壁挂立方体和交错的随机障碍物的湍流,其面积密度为25%。自由流速度和障碍物高度。 Re = 5×10 ^ 3数据针对相同Re的直接数值模拟(DNS)结果进行了严格的验证,并且在相同粗糙度和相当高Re的边界层上获得的实验数据也得到了验证。这些结果共同证实了雷诺数依赖性非常弱,这主要是因为表面阻力主要来自阻力,并且湍流产生过程的规模与粗糙度元素的尺寸相当。 LES因此能够用高网格模拟在Re较高的城市障碍物上的湍流,而网格对于相应的光滑壁流的足够计算来说太粗糙了。包括LES和雷诺平均Navier-Stokes(RANS)结果的比较,强调后者不足,尤其是在冠层区域内。

著录项

  • 作者

    Xie Zheng-Tong; Castro Ian P.;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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