REYNOLDS-NUMBER SCALING OF TURBULENT CHANNEL FLOW

M. Schultz, K. Flack
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引用次数: 156

Abstract

Results of an experimental study of smooth-wall, fully developed, turbulent channel flow are presented. The Reynolds number (Rem) based on the channel height and the bulk mean velocity ranged from 10 000 to 300 000. The present results indicate that the skin-friction coefficient (Cf) closely follows a power law for Rem < 62 000. At higher Reynolds numbers, Cf is best described by a log law. Detailed two-component velocity measurements taken at friction Reynolds numbers of Reτ = 1000–6000 indicate that the mean flow and Reynolds shear stress display little or no Reynolds-number dependence. The streamwise Reynolds normal stress (u′2¯+), on the other hand, varies significantly with Reynolds number. The inner peak in u′2¯+ is observed to grow with Reynolds number. Growth in u′2¯+ farther from the wall is documented over the entire range of Reynolds number giving rise to a plateau in the streamwise Reynolds normal stress in the overlap region of the profile for Reτ = 6000. The wall-normal Reynolds normal stres...
紊流通道流动的雷诺数标度
本文介绍了光滑壁、完全发育的湍流通道流动的实验研究结果。基于通道高度和整体平均流速的雷诺数(Rem)在10000 ~ 300000之间。结果表明,当雷姆< 62 000时,表面摩擦系数(Cf)服从幂律。在较高的雷诺数下,Cf最好用对数定律来描述。在Reτ = 1000-6000的摩擦雷诺数下进行的详细的双分量速度测量表明,平均流量和雷诺剪应力很少或没有雷诺数依赖关系。另一方面,沿流方向的雷诺正应力(u′2¯+)随雷诺数变化显著。u ' 2¯+的内峰随着雷诺数的增加而增大。在整个雷诺数范围内,离壁面更远的u′2¯+的增长被记录下来,导致剖面重叠区域的流向雷诺兹正应力在Reτ = 6000时达到平台。壁向雷诺兹法向应力…
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