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Measurement Investigation of Complex Eddy Viscosity Model in Non-equilibrium Wavy Wall Turbulence with TRPIV

机译:具有TRPIV的非平衡波浪壁湍流中复杂涡粘度模型的测量研究

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The spatial flow fields of turbulent boundary layer over a wavy wall were measured by TRPIV at three different Reynolds numbers in a water channel, the mean streamwise and wall-normal velocities near the wall were calculated from the time series of instantaneous spatial 2D-2C flow fields of turbulent boundary layer, and the periodic distributions of the streamwise and wall-normal velocity in streamwise direction influenced by the wavy wall were found. The spatial distributions of Reynolds stress and mean velocity strain rate were obtained by ensemble average. Using the spatial cross-correlation technique, the spatial phase relationship in streamwise direction between mean velocity strain rate and Reynolds stress was investigated. It is found that there exist spatial phase differences between Reynolds stress components and mean velocity strain rate components, the phase differences increase gradually after decrease gradually from zero away from the wavy wall in wall-normal direction and reach a minimum at 0.4~0.5 times the wavelength of wavy wall, and in a certain range the effect of the Reynolds number on the phase differences is very small. The reasonability of the complex eddy viscosity model is confirmed by these experimental evidences in order to forecast non-equilibrium turbulence accurately.
机译:通过在水通道中的三种不同的雷诺数的TRPIV通过TRPIV测量波浪壁上的空间流动场,从瞬时空间2D-2C流程的时间序列计算壁附近的平均流动和壁正常速度发现了湍流边界层的场,并发现了由波状壁影响的流动方向上的流动和壁正常速度的周期性分布。雷诺应力和平均速度应变速率的空间分布通过集合平均获得。使用空间互相关技术,研究了平均速度应变率和雷诺应力之间的流动方向的空间相位关系。发现雷诺应力分量与平均速度应变速率分量之间存在空间相位差,相差在从壁正常方向逐渐减小到从波浪壁逐渐减小后逐渐增加,达到0.4〜0.5倍的速度逐渐增加波浪壁的波长,并且在一定范围内雷诺数对相位差的影响非常小。通过这些实验证据证实了复杂涡粘度模型的合理性,以准确地预测非平衡湍流。

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