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Enhanced droplet collision rates and impact velocities in turbulent flows: The effect of poly-dispersity and transient phases

机译:湍流中液滴碰撞率和撞击速度的提高:多分散性和过渡相的影响

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摘要

We compare the collision rates and the typical collisional velocities amongst droplets of different sizes in a poly-disperse suspension advected by two- and three-dimensional turbulent flows. We show that the collision rate is enhanced in the transient phase for droplets for which the size-ratios between the colliding pairs is large as well as obtain precise theoretical estimates of the dependence of the impact velocity of particles-pairs on their relative sizes. These analytical results are validated against data from our direct numerical simulations. Our results suggest that an explanation of the rapid growth of droplets, e.g., in warm clouds, may well lie in the dynamics of particles in transient phases where increased collision rates between large and small particles could result in runaway process. Our results are also important to model coalescence or fragmentation (depending on the impact velocities) and will be crucial, for example, in obtaining precise coalescence kernels in such systems.
机译:我们比较了由二维和三维湍流平移的多分散悬浮液中不同尺寸液滴之间的碰撞率和典型碰撞速度。我们表明,对于碰撞对之间的尺寸比较大的液滴,在过渡阶段碰撞速率会提高,并且可以获得精确的理论估计值,这些理论对取决于颗粒对的撞击速度对其相对尺寸的依赖性。这些分析结果已根据我们直接数值模拟的数据进行了验证。我们的结果表明,对于小滴快速生长(例如在温暖的云中)的解释可能完全在于瞬态相中的粒子动力学,在瞬态相中大颗粒和小颗粒之间的碰撞速率增加可能导致失控过程。我们的结果对于模型化聚结或碎片化(取决于冲击速度)也很重要,并且对于例如在此类系统中获得精确的聚结内核至关重要。

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