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Turbulence Anisotropy in the Near-Surface Atmosphere and the Evaluation of Multiple Outer Length Scales

机译:近地表大气湍流各向异性和多个外部尺度的评估

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摘要

Length scales determined by maximum turbulent kinetic energy (TKE), the integral scale, and two length scales based on Reynolds stress-tensor anisotropy are compared to the often stated outer length scales of boundary-layer depth and distance from the earth's surface, . The scales are calculated using sonic anemometer data from two elevations, 5 and 50 m above the ground at the main tower site of the CASES-99 field campaign. In general, none of these scales agrees with the other, although the scale of maximum TKE is often similar to the boundary-layer depth during daytime hours, and the length scales derived from anisotropy characteristics are sometimes similar to , and depending on scale definition and thermal stability. Except for the scale with the strictest isotropy threshold, the turbulence is anisotropic for each of the various candidates for the outer scale. Length scales for maximum buoyancy flux and temperature variance are evaluated and the turbulence characteristics at these scales are almost always found to be anisotropic.
机译:将由最大湍动能(TKE),积分标度和两个基于雷诺应力张量各向异性的长度标度确定的长度标度与边界层深度和距地球表面的距离的常述外部标度进行比较。比例尺是使用CASES-99野战主塔地点离地面5和50 m处两个海拔的声波风速计数据计算得出的。通常,尽管在白天,最大TKE的尺度通常与边界层深度相似,并且各向异性的特征得出的长度尺度有时与,以及取决于尺度定义和热稳定性。除了具有最严格的各向同性阈值的标度之外,湍流对于外部标度的各种候选中的每一个都是各向异性的。评估了最大浮力通量和温度变化的长度尺度,并且在这些尺度上的湍流特性几乎总是各向异性的。

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