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首页> 外文期刊>Acta Mechanica >Experimental study on the particle accumulation phenomenon in seeded flows around a near-bottom-wall horizontal cylinder
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Experimental study on the particle accumulation phenomenon in seeded flows around a near-bottom-wall horizontal cylinder

机译:近底壁水平圆柱体种子流中颗粒堆积现象的实验研究

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摘要

In experiments of flows around a cylinder in a water channel, an interesting phenomenon is that a particle accumulation line obviously forms on the bottom of the channel. The present paper focuses on this phenomenon, and the formation mechanism of the particle accumulation line is in detail investigated experimentally with particle image velocimetry (PIV). The circular cylinder was set in a fully developed turbulent boundary layer with 12 gap ratios S/D ranging from 0 to 1.5 under two Reynolds numbers (1371 and 902) based on the momentum loss thickness. The possible mechanism of this phenomenon has been demonstrated with the experimental results: the separation takes place due to the interaction between the wake of the cylinder and the boundary layer of the plane wall, the gap flow separates from the wall downstream of the cylinder and causes an attachment vortex of low velocity area at about 1 to 2 cylinder diameters from the cylinder, where the particle accumulation line forms steadily.
机译:在水通道中围绕圆柱体的流动实验中,一个有趣的现象是,在通道底部明显形成了颗粒堆积线。本文针对这一现象,利用粒子图像测速技术(PIV)对粒子聚集线的形成机理进行了详细的实验研究。根据动量损失厚度,在两个雷诺数(1371和902)下,将圆柱体放置在完全展开的湍流边界层中,该间隙边界S / D的范围为0至1.5,S / D为12。实验结果证明了这种现象的可能机制:分离是由于圆柱体的尾流与平面壁边界层之间的相互作用而发生的,间隙流与圆柱体下游的壁分离并导致低速区域的附着涡流,距离圆柱体约1到2个圆柱体直径,在此处粒子积累线稳定形成。

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