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On the Measurement of Wall-Normal Velocity Derivative in a Turbulent Boundary Layer

机译:湍流边界层中壁正常速度衍生物的测量

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The wall-normal velocity derivative of partial derivative u/partial derivative y is measured in a turbulent boundary layer, down to 2 wall units from the wall, using two parallel hot-wires. The momentum-thickness- and friction-velocity-based Reynolds numbers are 1450 and 584, respectively. The experimental results indicate that partial derivative u/partial derivative y may be captured with an adequate accuracy given a separation (y) of 2 5 Kolmogorov length scales eta between the two parallel hot-wires, slightly different from that (2 eta 4 eta) required for a turbulent channel flow. The surrogate for displays a significant departure in the buffer layer from that in the turbulent channel flow, due to a difference in the large-scale coherent structures between the two flows. The skewness and kurtosis of partial derivative u/partial derivative y differ markedly from their counterparts in a turbulent channel flow, which reflects a difference in the small-scale turbulent structures of the outer region between the two flows.
机译:使用两个平行的热线,在湍流边界层中测量部分导数U /部分导数Y的壁正常速度导数在湍流边界层中测量到2个壁单元。动量厚度和摩擦速度的雷诺数分别为1450和584。实验结果表明,在两个平行的热线之间的2 5 Kolmogorov长度尺度ETA的分离(Y)略有不同(2ETA 4 ETA)的分离(y),可以以足够的精度捕获部分衍生U /部分导数y。湍流通道流量需要。由于两个流程之间的大规模相干结构的差异,在缓冲层中显示出在缓冲层中的显着偏离的替代物。部分衍生U /部分导数Y的偏差和峰度与湍流通道流中的对应物显着不同,这反映了两个流动之间的外部区域的小规模湍流结构的差异。

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