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Adverse pressure gradient turbulent flows over rough walls

机译:逆向压力梯度湍流流过粗糙的墙壁

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An experimental study of a fully developed turbulent channel flow and an adverse pressure gradient (APG) turbulent channel flow over smooth and rough walls has been performed using a particle image velocimetry (PIV) technique. The rough walls comprised two-dimensional square ribs of nominal height, k = 3 mm and pitch, p = 2k, 4k and 8k. It was observed that rib roughness enhanced the drag characteristics, and the degree of enhancement increased with increasing pitch. Similarly, rib roughness significantly increased the level of turbulence production, Reynolds stresses and wall-normal transport of turbulence kinetic energy and Reynolds shear stress well beyond the roughness sublayer. On the contrary, the distributions of the eddy viscosity, mixing length and streamwise transport of turbulence kinetic energy and Reynolds shear stress were reduced by wall roughness, especially in the outer layer. Adverse pressure gradient produced a further reduction in the mean velocity (in comparison to the results obtained in the parallel section) but increased the wall-normal extent across which the mean flow above the ribs is spatially inhomogeneous in the streamwise direction. APG also reinforced wall roughness in augmenting the equivalent sand grain roughness height. The combination of wall roughness and APG significantly increased turbulence production and Reynolds stresses except in the immediate vicinity of the rough walls. The transport velocities of the turbulence kinetic energy and Reynolds shear stress were also augmented by APG across most part of the rough-wall boundary layer. Further, APG enhanced the distributions of the eddy viscosity across most of the boundary layer but reduced the mixing length outside the roughness sublayer.
机译:已经使用粒子图像测速(PIV)技术进行了在光滑和粗糙的壁面上充分发展的湍流通道流动和逆压梯度(APG)湍流通道流动的实验研究。粗糙的墙壁包括标称高度k = 3 mm和间距p = 2k,4k和8k的二维方肋。观察到肋的粗糙度增强了阻力特性,并且增强的程度随着间距的增加而增加。同样,肋的粗糙度显着增加了湍流产生,雷诺应力和湍流动能的壁法向传递水平,并且雷诺剪切应力大大超出了粗糙度子层。相反,涡流粘度,混合长度以及湍流动能和雷诺剪切应力的沿流输送的分布由于壁的粗糙度而减小,特别是在外层。不利的压力梯度使平均速度进一步降低(与在平行截面中获得的结果相比),但增大了壁的法线范围,肋骨上方的平均流量在该范围内沿流向在空间上是不均匀的。 APG还通过增加等效的沙粒粗糙度高度来增强壁面粗糙度。壁面粗糙和APG的结合显着增加了湍流产生和雷诺应力,除了在粗糙壁面附近。 APG在粗糙壁边界层的大部分区域也增加了湍流动能和雷诺剪切应力的传输速度。此外,APG增强了大部分边界层上涡流粘度的分布,但减小了粗糙度子层外部的混合长度。

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