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首页> 外文期刊>Journal of Fluid Mechanics >Spanwise velocity statistics in high-Reynolds-number turbulent boundary layers
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Spanwise velocity statistics in high-Reynolds-number turbulent boundary layers

机译:高雷诺数湍流边界层中的霉菌速度统计

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Spanwise velocity statistics from high-Reynolds-number turbulent boundary layers are reported. The dataset combines efforts spanning over a decade at the University of Melbourne to accurately capture Reynolds number (Re) trends for the spanwise velocity, nominally over one order of magnitude change in Re, using custom subminiature cross-wire probes that minimise spatial resolution effects and misalignment errors. The spanwise velocity (v) variance is found to exhibit an Re invariant logarithmic slope in the log region, in a similar manner to the streamwise velocity (u), which is consistent with the existence of self-similar features within wall-bounded flows. However, unlike the u-variance, it appears that the logarithmic v-variance trend continues to extend towards the wall. The increase in the v-variance with Re in the log region is found to be due to `intermediate-scale eddies', which follow distance-from-the-wall scaling. This results in the v-spectrogram exhibiting a dominant energetic ridge across the intermediate-scales, a trend that is not clearly observed in the u-spectrogram. Other features of the v-spectrogram are found to be similar to the u-spectrogram, such as showing small-scale near-wall features that scale universally with viscous units, and the influence of large-scale v signals residing in the log region that extend to the wall, resulting in a large-scale v footprint in the near-wall region. The observed behaviour of the v-spectrogram with changing Re is used to construct a model for the v-variance based on contributions from small-, intermediateand large-scales, leading to a predictive tool at asymptotically high Re.
机译:报道了高雷诺数湍流边界层的展向速度统计。该数据集结合了跨越墨尔本大学十年的努力,准确地捕捉雷诺兹数(RE)的展向速度趋势,名义上超过一个数量级的变化在RE,使用自定义超小型十字线探针,最大限度地减少空间分辨率的影响和失调误差。研究发现,展向速度(v)方差在对数区域表现出一个再不变对数斜率,其方式与流向速度(u)类似,这与壁面有界流动中存在自相似特征相一致。然而,与u-方差不同,对数v-方差趋势似乎继续向墙延伸。在对数区域内,v-方差随Re的增加被发现是由于“中等尺度涡旋”,它跟随壁标度的距离。这导致v-谱图在中间尺度上显示出占主导地位的能量脊,这一趋势在u-谱图中没有清楚观察到。发现v-谱图的其他特征与u-谱图类似,例如显示了小尺度的近壁特征,该特征普遍随粘性单位扩展,以及位于延伸至壁的对数区域中的大尺度v信号的影响,导致近壁区域中出现大尺度v足迹。根据观测到的v-谱图随Re变化的行为,基于小、中、大尺度的贡献,构建了v-方差模型,从而在渐近高Re下形成了一个预测工具。

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