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Statistical evidence of anasymptotic geometric structure to the momentum transporting motions in turbulent boundary layers

机译:渐近几何结构对湍流边界层动量传输运动的统计证明

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摘要

The turbulence contribution to the mean flow is reflected by the motions producing the Reynolds shear stress (〈−uv〉) and its gradient. Recent analyses of the mean dynamical equation, along with data, evidence that these motions asymptotically exhibit self-similar geometric properties. This study discerns additional properties associated with the uv signal, with an emphasis on the magnitudes and length scales of its negative contributions. The signals analysed derive from high-resolution multi-wire hot-wire sensor data acquired in flat-plate turbulent boundary layers. Space-filling properties of the present signals are shown to reinforce previous observations, while the skewness of uv suggests a connection between the size and magnitude of the negative excursions on the inertial domain. Here, the size and length scales of the negative uv motions are shown to increase with distance from the wall, whereas their occurrences decrease. A joint analysis of the signal magnitudes and their corresponding lengths reveals that the length scales that contribute most to 〈−uv〉 are distinctly larger than the average geometric size of the negative uv motions. Co-spectra of the streamwise and wall-normal velocities, however, are shown to exhibit invariance across the inertial region when their wavelengths are normalized by the width distribution, W(y), of the scaling layer hierarchy, which renders the mean momentum equation invariant on the inertial domain.This article is part of the themed issue ‘Toward the development of high-fidelity models of wall turbulence at large Reynolds number’.
机译:湍流对平均流量的贡献通过产生雷诺剪切应力(〈-uv〉)及其梯度的运动来反映。对平均动力学方程以及数据的最新分析表明,这些运动渐近展现出自相似的几何特性。这项研究辨别了与uv信号相关的其他属性,重点是其负贡献的大小和长度尺度。分析的信号来自在平板湍流边界层中获取的高分辨率多线热线传感器数据。当前信号的空间填充特性显示出可以加强先前的观察结果,而uv的偏斜表明惯性域上负偏移的大小和大小之间存在联系。在这里,负uv运动的大小和长度比例显示为与距墙壁的距离增加,而它们的出现减少。对信号幅度及其相应长度的联合分析表明,对〈-uv〉贡献最大的长度尺度明显大于负uv运动的平均几何尺寸。然而,当通过尺度层层次的宽度分布W(y)归一化它们的波长时,流向和壁法向速度的共谱在惯性区域显示出不变性,从而给出了平均动量方程本文是主题问题的一部分,“致力于发展大雷诺数壁湍流的高保真度模型”。

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