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首页> 外文期刊>Physical Review X >Coherent Structures and Extreme Events in Rotating Multiphase Turbulent Flows
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Coherent Structures and Extreme Events in Rotating Multiphase Turbulent Flows

机译:旋转多相湍流中的相干结构和极端事件

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By using direct numerical simulations (DNS) at unprecedented resolution, we study turbulence under rotation in the presence of simultaneous direct and inverse cascades. The accumulation of energy at large scale leads to the formation of vertical coherent regions with high vorticity oriented along the rotation axis. By seeding the flow with millions of inertial particles, we quantify—for the first time—the effects of those coherent vertical structures on the preferential concentration of light and heavy particles. Furthermore, we quantitatively show that extreme fluctuations, leading to deviations from a normal-distributed statistics, result from the entangled interaction of the vertical structures with the turbulent background. Finally, we present the first-ever measurement of the relative importance between Stokes drag, Coriolis force, and centripetal force along the trajectories of inertial particles. We discover that vortical coherent structures lead to unexpected diffusion properties for heavy and light particles in the directions parallel and perpendicular to the rotation axis.
机译:通过以前所未有的分辨率使用直接数值模拟(DNS),我们研究了同时存在直接和反向级联时旋转下的湍流。大规模的能量积累导致形成沿旋转轴定向的具有高涡度的垂直相干区域。通过用数百万个惯性粒子播种流体,我们首次量化了这些相干垂直结构对轻,重粒子优先浓度的影响。此外,我们定量地表明,导致垂直结构与湍流背景纠缠的相互作用导致极端波动,从而导致与正态分布统计量的偏差。最后,我们将首次沿惯性粒子的轨迹测量斯托克斯阻力,科里奥利力和向心力之间的相对重要性。我们发现,涡旋相干结构在平行和垂直于旋转轴的方向上导致了重粒子和轻粒子的意外扩散特性。

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