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Communication between the buffer layer and the wall in a turbulent channel flow

机译:缓冲层和墙壁之间的通信在湍流通道流中

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Direct numerical simulations obtained in large computational domains of a fully developed turbulent channel flow up to the Karman number 1100 are analyzed to determine the scaling of the spanwise correlation coefficients and the effect of the outer eddies. The local fluctuating velocity field is narrow-band-pass and low-pass filtered along the streamwise wavenumber. The spanwise correlations of the narrow-band passed signals in the low buffer layer adequately provide length scales and signatures of the active structures. The low-pass filtering is used to investigate the relative role of the outer eddies. The impact of the active and passive eddies on the wall is analyzed separately through the cross-correlations of the filtered velocity field with the wall shear stress fluctuations. Characteristic length-scales resulting from the analysis of the velocity field differ depending on the quantity and some are related to the conventional streak spacing but not all. The quasi-streamwise vortex paradigm, for the most part, allows the interpretation of these characteristics, but fails in some cases.
机译:分析了在完全开发的湍流通道的大型计算领域中获得的直接数值模拟,从而达到Karman号1100,以确定拍摄翼展相关系数的缩放和外涡涡流的效果。局部波动速度场是窄带通,沿着流动波数滤出的低通。低缓冲层中的窄带通过信号的跨度相关性充分提供活动结构的长度尺度和签名。低通滤波用于研究外漩涡的相对作用。通过覆滤速度场与壁剪切应力波动的互相关分开分析主动和被动涡流对壁上的影响。由速度场的分析产生的特征长度根据数量而不同,有些与传统的条纹间距有关,但不是全部。对于大多数情况下,准流涡流范例允许解释这些特征,但在某些情况下失败。

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