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首页> 外文期刊>Physical review letters >Inertial Clustering of Particles in High-Reynolds-Number Turbulence
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Inertial Clustering of Particles in High-Reynolds-Number Turbulence

机译:高雷诺数湍流中粒子的惯性聚类

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摘要

We report experimental evidence of spatial clustering of dense particles in homogenous, isotropic turbulence at high Reynolds numbers. The dissipation-scale clustering becomes stronger as the Stokes number increases and is found to exhibit similarity with respect to the droplet Stokes number over a range of experimental conditions (particle diameter and turbulent energy dissipation rate). These findings are in qualitative agreement with recent theoretical and computational studies of inertial particle clustering in turbulence. Because of the large Reynolds numbers a broad scaling range of particle clustering due to turbulent mixing is present, and the inertial clustering can clearly be distinguished from that due to mixing of fluid particles.
机译:我们报告了在高雷诺数下均质,各向同性湍流中密集颗粒的空间聚集的实验证据。随着斯托克斯数的增加,耗散规模的聚类变得更强,并且发现其在一系列实验条件(粒径和湍流能量耗散率)上相对于液滴斯托克斯数表现出相似性。这些发现与湍流中惯性粒子聚类的最新理论和计算研究在质量上是一致的。由于大的雷诺数,存在由于湍流混合而导致的粒子簇的较宽比例范围,并且可以将惯性簇与由于流体颗粒的混合而明显区别开来。

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