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Turbulent/non-turbulent interfaces detected in DNS of incompressible turbulent boundary layers

机译:在不可压缩的湍流边界层DNS中检测到的湍流/非湍流界面

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摘要

The turbulent/non-turbulent interface (TNTI) detected in direct numerical simulations is studied for incompressible, temporally developing turbulent boundary layers at momentum thickness Reynolds number Re-theta approximate to 2000. The outer edge of the TNTI layer is detected as an isosurface of the vorticity magnitude with the threshold determined with the dependence of the turbulent volume on a threshold level. The spanwise vorticity magnitude and passive scalar are shown to be good markers of turbulent fluids, where the conditional statistics on a distance from the outer edge of the TNTI layer are almost identical to the ones obtained with the vorticity magnitude. Significant differences are observed for the conditional statistics between the TNTI detected by the kinetic energy and vorticity magnitude. A widely used grid setting determined solely from the wall unit results in an insufficient resolution in a streamwise direction in the outer region, whose influence is found for the geometry of the TNTI and vorticity jump across the TNTI layer. The present results suggest that the grid spacing should be similar for the streamwise and spanwise directions. Comparison of the TNTI layer among different flows requires appropriate normalization of the conditional statistics. Reference quantities of the turbulence near the TNTI layer are obtained with the average of turbulent fluids in the intermittent region. The conditional statistics normalized by the reference turbulence characteristics show good quantitative agreement for the turbulent boundary layer and planar jet when they are plotted against the distance from the outer edge of the TNTI layer divided by the Kolmogorov scale defined for turbulent fluids in the intermittent region. Published by AIP Publishing.
机译:研究了直接数值模拟中检测到的湍流/非湍流界面(TNTI)对不可压缩的,瞬时开发湍流边界层在近似为2000的动量厚度雷诺数。TNTI层的外边缘被检测为等索涡度幅度,阈值与湍流体积的依赖性确定在阈值水平上。翼展涡度幅度和被动标量被示出为湍流流体的良好标记,其中距离TNTI层的外边缘的条件统计几乎与用涡度幅度获得的距离相同。对于由动能和涡流幅度检测到的TNTI之间的条件统计,观察到显着差异。仅来自壁单元确定的广泛使用的网格设置导致外部区域中的流动方向上的分辨率不足,其影响是针对TNTI层的TNTI和涡度跳跃的几何形状的影响。本结果表明,网格间距应该类似于流动和枝条方向。不同流之间的TNTI层的比较需要适当的条件统计量定。通过间歇区域中的湍流流体的平均值获得TNTI层附近的湍流的参考量。当通过参考湍流特征归一化的条件统计,当湍流边界层和平面射流绘制距离TNTI层的外边缘的距离被除以用于间歇区域中的湍流流体的Kolmogorov标度时,对湍流边界层和平面射流进行了良好的定量协议。通过AIP发布发布。

著录项

  • 来源
    《Physics of fluids》 |2018年第3期|共14页
  • 作者

    Watanabe T.; Zhang X.; Nagata K.;

  • 作者单位

    Nagoya Univ Dept Aerosp Engn Nagoya Aichi Japan;

    Nagoya Univ Dept Aerosp Engn Nagoya Aichi Japan;

    Nagoya Univ Dept Aerosp Engn Nagoya Aichi Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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