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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Investigation of secondary flows in turbulent pipe flows with three-dimensional sinusoidal walls

机译:APS-APS流体动力学分部第70届年会-事件-具有三维正弦波壁的湍流中二次流的研究

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The occurrence of secondary flows is systematically investigated via Direct Numerical Simulations (DNS) of turbulent flow in a rough wall pipe at friction Reynolds numbers of 540. In this study, the peak-to-trough height of the roughness elements, which consist of three-dimensional sinusoidal roughness, is fixed at 120 viscous units while the wavelength of the roughness elements is varied. The solidity or effective slope ($ES$) of the roughness ranges from the sparse regime ($ES = 0.18$) to the closely packed roughness/dense regime ($ES = 0.72$). The time-independent dispersive stresses, which arise due to the stationary features of the flow, are analysed and are found to increase with increasing roughness wavelength. These dispersive stresses are related to the occurrence of secondary flows and are maximum within the roughness canopy. Above the crest of the roughness elements, the dispersive stresses reduce to zero at wall-normal heights greater than half of the roughness wavelength. This study has found that the size and wall-normal extent of the secondary flows scales with the roughness wavelength and can reach wall-normal heights of almost half of the pipe radius.
机译:通过直接数值模拟(DNS)对在540的摩擦雷诺数下的粗糙壁管中的湍流进行了系统研究,研究了二次流的发生。在本研究中,粗糙元素的峰谷高度包括三个尺寸正弦波粗糙度固定在120粘性单位,而粗糙度元素的波长则变化。粗糙度的坚固性或有效斜率($ ES $)从稀疏状态($ ES = 0.18 $)到紧密堆积的粗糙度/致密状态($ ES = 0.72 $)不等。分析了由于流动的静态特征而产生的与时间无关的分散应力,发现该应力随粗糙度波长的增加而增加。这些分散应力与二次流的发生有关,并且在粗糙层中最大。在粗糙度元素的波峰上方,当壁面法向高度大于粗糙度波长的一半时,色散应力减小到零。这项研究发现,二次流的大小和壁面法线范围与粗糙度波长成比例,并且可以达到接近管道半径一半的壁面法线高度。

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