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Experimental investigation of turbulent flow over surfaces of rigid and flexible roughness

机译:刚性柔性粗糙度表面湍流的实验研究

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摘要

This study presents a comparative experiment to investigate turbulent channel flows over surfaces of rigid and flexible roughness. Using digital inline holographic particle tracking velocimetry in a refractive-index-matched flow channel, the turbulent flow and roughness deformation are measured simultaneously. The mean velocity profiles of the two cases match closely, but the flow over flexible roughness shows a substantial reduction of Reynolds stresses with a corresponding decrease of coherence in roughness-induced flow structures. For flexible roughness, the streamwise roughness deformation exhibits higher energy levels at lower frequencies where the fluid velocity spectra peak, while the spanwise deformation shows a more prominent peak at the natural frequency of the roughness elements. Combining the measurements of turbulent flow and roughness kinematics, we show a close match of the strain energy of the flexible roughness with the deficit of turbulent kinetic energy (TKE) due to roughness compliance, and a connection between large roughness deformation and elevated levels of Reynolds stresses. Overall, these analyses demonstrate the anisotropic process of turbulence-roughness interaction, in which the TKE is dampened and primarily converted into streamwise deformation of roughness, and is partially returned to the smaller scale turbulence through spanwise oscillation of roughness at its natural frequency.
机译:该研究提出了一种对比实验,以研究刚性和柔性粗糙度的表面的湍流通道流动。在折射率匹配的流动通道中使用数字内联全息粒子跟踪速度测速法,同时测量湍流和粗糙度变形。两种情况的平均速度分布紧密地匹配,但是柔性粗糙度的流动表明,在粗糙度诱导的流动结构中相应的相干性降低,雷诺胁迫的大幅度减小。为了灵活粗糙度,流动粗糙度变形在流体速度光谱峰值的较低频率下表现出更高的能量水平,而始线变形显示在粗糙度元件的固有频率下更突出的峰值。结合湍流和粗糙度运动学的测量,我们展示了柔性粗糙度的应变能量的紧密匹配,由于粗糙度遵守,湍流动能(TKE)的缺陷,以及大的粗糙度变形和雷诺水平的连接压力。总的来说,这些分析证明了湍流 - 粗糙度相互作用的各向异性过程,其中TKE被抑制并主要转化为粗糙度的流动变形,并且通过在其自然频率下粗糙度振荡部分地返回到较小的速度湍流。

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