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Effects of roughness and adverse pressure gradient on the turbulence structure

机译:粗糙度和逆压力梯度对湍流结构的影响

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The manuscript presents an experimental study of turbulent flows over smooth and rough walls in a channel that consists of an upstream parallel section to produce a fully developed channel flow and a diverging section to produce an adverse pressure gradient (APG) flow. The roughness element consists of two-dimensional transverse square ribs of nominal height, k = 3 mm that were spaced to produce pitch-to-height ratio of p/k = 2 and 8, corresponding to d-type and k-type rough walls. A particle image velocimetry system was used to conduct detailed velocity measurements over the smooth and rough walls in both the parallel and diverging sections. The mean defect velocity and Reynolds stresses as well as Galilean decomposition, quadrant decomposition, two-point velocity correlation and linear stochastic estimation were used to document the salient effects of APG and wall roughness on the flows. The results indicated that APG significantly augments turbulence level compared to the flows in the parallel section. The flow fields were populated with vortex cores that formed hairpin vortex packets. The packets were inclined at shallow angles relative to the wall as revealed by the two-point velocity correlation. The quadrant analysis revealed that the ejections, sweeps, and inward and outward interaction motions associated with the structures were influenced by roughness and APG. The existence of structures was further supported by linear stochastic estimates conditioned on the prograde vortices.
机译:该手稿提出了对通道内光滑和粗糙壁上湍流的实验研究,该通道由上游平行段产生完全展开的通道流和发散段产生逆压力梯度(APG)流组成。粗糙度元素由标称高度k = 3 mm的二维横向方肋组成,这些肋间隔开以产生p / k = 2和8的间距高度比,对应于d型和k型粗糙壁。粒子图像测速系统用于在平行和发散部分的光滑和粗糙壁上进行详细的速度测量。平均缺陷速度和雷诺应力以及Galilean分解,象限分解,两点速度相关性和线性随机估计用于记录APG和壁粗糙度对流动的显着影响。结果表明,与平行截面中的流动相比,APG显着提高了湍流水平。流场中充满形成发夹式涡流小包的涡流核。两点速度相关性表明,包装袋相对于墙壁呈浅角度倾斜。象限分析显示,与结构相关的弹射,横掠以及向内和向外的交互运动受粗糙度和APG的影响。结构的存在进一步受到以线性涡旋为条件的线性随机估计的支持。

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