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Wall-shear stress patterns of coherent structures in turbulent duct flow

机译:湍流管道中相干结构的壁剪应力模式

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The wall-shear stress distribution in turbulent duct flow has been assessed using the micro-pillar shear-stress sensor MPS~3. The spatial resolution of the sensor line is 10.8 l~+ (viscous units) and the total field of view of 120 l~+ along the spanwise direction allows to capture characteristic dimensions of the wall-shear stress distribution at sufficiently high resolution. The results show the coexistence of low-shear and high-shear regions representing __footprints' of near-wall coherent structures. The regions of low shear resemble long meandering bands locally interrupted by areas of higher shear stress. Conditional averages of the flow field indicate the existence of nearly streamwise counter-rotating vortices aligned in the streamwise direction. The results further show periods of very strong spanwise wall-shear stress to be related to the occurrence of high streamwise shear regions and momentum transfer towards the wall. These events go along with a spanwise oscillation and a meandering of the low-shear regions.
机译:使用微柱切应力传感器MPS〜3评估了湍流管道中壁剪应力的分布。传感器线的空间分辨率为10.8 l〜+(粘滞单位),沿翼展方向的总视野为120 l〜+,可以在足够高的分辨率下捕获壁剪应力分布的特征尺寸。结果表明低剪切区和高剪切区并存,代表着近壁相干结构的“足迹”。低剪切力的区域类似于被较高剪切应力的区域局部打断的长曲折带。流场的条件平均数表明存在沿流向排列的近流反向旋涡。结果还表明,展幅方向上很强的剪力与高流向剪切区域的发生和向壁的动量传递有关。这些事件伴随着翼展方向的振荡和低剪切区的曲折。

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