Robustness of Turbulent Stripes in Particle-Laden Channel Flows

M. Hanabusa, T. Tsukahara
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Abstract

It is known that intermittent localized turbulence, so-called turbulent stripes, sustains in the form of oblique bands in subcritical transitional regime of channel flows. The pattern is formed and accompanied by secondary flows along the localized turbulence. In particle-laden turbulent flows, turbulent intensity can be enhanced or suppressed by particles. However, the effect of the particles on the turbulent stripes in subcritical transitional regime is still unknown. In this paper, we investigated the particle distributions with respect to the turbulent stripes in one-way coupling simulations and studied the effect of particle-fluid interactions on the robustness of the stripes in two-way coupling simulations. In one-way coupling, the turbulent stripe provides a cluster of heavier, or large-Stokes-number, particles in a form of oblique band similar to the stripe, in the wall-parallel direction. Furthermore, heavier particles accumulate near the wall even without gravity. In two-way coupling, the stripes tend to be broken for heavier particles. The stability of the pattern also depends on the particle volume fraction. For higher volume fraction of particle, particles have a significant effect on the sustenance of the stripes. In such a case, the particle-fluid interactions exhibit the force that accelerates the fluid near the wall. The turbulent kinetic energies of large-scale flow and fine-scale eddies are attenuated by heavier particles. Different wave-number scaled structures were generated and disappeared as a laminarization process.
含颗粒通道流中湍流条纹的鲁棒性
众所周知,间歇性局部湍流,即所谓的湍流条纹,在通道流动的亚临界过渡区以斜带的形式存在。沿局部湍流形成并伴有二次流。在含颗粒湍流中,颗粒可以增强或抑制湍流强度。然而,粒子对亚临界过渡区湍流条纹的影响尚不清楚。本文研究了单向耦合模拟中湍流条纹的颗粒分布,并研究了双向耦合模拟中颗粒-流体相互作用对条纹鲁棒性的影响。在单向耦合中,湍流条纹在壁面平行方向上以类似条纹的斜带形式提供了一簇较重的或大斯托克斯数的粒子。此外,即使没有重力,较重的粒子也会聚集在壁附近。在双向耦合中,较重的粒子往往会破坏条纹。图案的稳定性还取决于颗粒的体积分数。当颗粒体积分数较高时,颗粒对条纹的维持有显著影响。在这种情况下,粒子-流体相互作用表现出加速流体靠近壁面的力。大尺度流动和细尺度涡流的湍动能被较重的粒子衰减。不同波数尺度结构在层叠过程中产生和消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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