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大雷诺数流动中湍流的局部结构。

Local structure of turbulence in flows with large Reynolds numbers.

作者信息

Praskovsky A. A.

机构信息

Central Aero-hydrodynamic Institute, Zhukovsky-3, Moscow Region 140160, USSR.

出版信息

Chaos. 1991 Aug;1(2):237-241. doi: 10.1063/1.165835.

Abstract

Results are reported on an experimental investigation of the characteristics of fine-scale pulsations of the velocity in several shear flows (mixing layer, boundary layer, planar, axially symmetric, and spatial wakes, and in the return channel of a large wind tunnel) in an interval of definite Reynolds numbers R(lambda) [approximately-equal-to] 70-3000 with respect to the Taylor microscale lambda. The characteristic scales of most of the studied flows are quite large, and the integral scale of the turbulence reaches 5 m. The apparatus had a high resolving power-the ratio of the hot-wire length to the Kolmogorov scale was varied in the range 0.8-2.5. It is shown that the Kolmogorov constant C in the "two thirds" law and the constants C(epsilon) and &mgr; in the energy-dissipation correlation function are not universal and have a systematic dependence on the coefficient of external intermittency. The same constants determined in a completely turbulent fluid are universal within the errors of the measurements.

摘要

本文报道了在一定雷诺数(R(\lambda))(相对于泰勒微尺度(\lambda)约为(70 - 3000))范围内,对几种剪切流(混合层、边界层、平面、轴对称和空间尾流,以及大型风洞的回流通道)中速度细尺度脉动特性进行实验研究的结果。大多数研究流的特征尺度相当大,湍流积分尺度达到(5)米。该仪器具有高分辨率——热线长度与科尔莫戈罗夫尺度的比值在(0.8 - 2.5)范围内变化。结果表明,“三分之二”定律中的科尔莫戈罗夫常数(C)以及能量耗散相关函数中的常数(C(\epsilon))和(\mu)并非通用,且与外部间歇性系数存在系统依赖性。在完全湍流流体中确定的相同常数在测量误差范围内是通用的。

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