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Direct numerical simulations of fully developed turbulent pipe flows for Re_τ = 180, 544 and 934

机译:对Re_τ= 180、544和934的完全发展的湍流管道流动的直接数值模拟

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Direct numerical simulations (DNSs) of fully developed turbulent pipe flows with a 30R streamwise domain for Re_τ = 180, 544 and 934 were performed to see the turbulence statistics and the interactions between the near-wall and outer regions. There are some slight discrepancies between previous DNS data for turbulent pipe flows with low Reynolds numbers Re_τ≈180 and the present data. These discrepancies arise because DNS results are sensitive to numerical conditions such as grid resolution and distribution. Our DNS data for various Reynolds numbers show that the near-wall peak in the streamwise turbulence intensity increases with increasing the Reynolds number. Evidence to support this finding was found in pre-multiplied energy spectra and the two-point amplitude modulation (AM) covariance. It was determined that both the long wavelength energy near the wall and the non-linear effects of AM contribute to the growth of the near-wall peak in the streamwise Reynolds stress.
机译:对Re_τ= 180、544和934的具有30R流向域的充分发展的湍流管道流进行直接数值模拟(DNS),以查看湍流统计数据以及近壁和外部区域之间的相互作用。雷诺数Re_τ≈180低的湍流管道的先前DNS数据与当前数据之间存在一些细微差异。由于DNS结果对诸如网格分辨率和分布之类的数字条件敏感,因此会出现这些差异。我们针对各种雷诺数的DNS数据显示,随着雷诺数的增加,沿流湍流强度的近壁峰增加。在预乘能谱和两点幅度调制(AM)协方差中找到了支持这一发现的证据。已确定壁附近的长波长能量和AM的非线性效应都有助于沿流雷诺应力的近壁峰的增长。

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