论文标题

湍流中的滴量捕获粒子

Particle capture by drops in turbulent flow

论文作者

Hajisharifi, Arash, Marchioli, Cristian, Soldati, Alfredo

论文摘要

我们检查了湍流通道流中大量可变形液捕获的粒子捕获过程。我们基于与相位场模型的湍流的直接数值模拟,以捕获界面动力学以及Lagrangian跟踪小(亚kolmogorov)粒子的拉格朗日跟踪,模拟了使用Eulerian-Lagrangian方法模拟固液三相流。液体液体的密度和粘度相同,中性固体颗粒与其他阶段单向结合。我们的结果表明,颗粒是通过喷射样的湍流运动向界面传输的,一旦足够接近,就会被正面速度差异区域的界面力捕获。这些区域似乎与高渗透流量拓扑良好相关,这些拓扑通过涡流压缩或拉伸有助于产生。检查将颗粒带到界面的湍流机制,我们能够得出一个简单的机械模型以捕获粒子。该模型可以预测整体捕获效率,并基于单个湍流传输方程,在该方程中,唯一的参数尺度具有在滴界面附近测得的流体的湍流动能。该模型在非相互作用粒子的极限上是有效的,其预测与数值结果非常吻合。

We examine the process of particle capture by large deformable drops in turbulent channel flow. We simulate the solid-liquid-liquid three-phase flow with an Eulerian-Lagrangian method based on Direct Numerical Simulation of turbulence coupled with a Phase Field Model, to capture the interface dynamics, and Lagrangian tracking of small (sub-Kolmogorov) particles. Drops have same density and viscosity of the carrier liquid, and neutrally-buoyant solid particles are one-way coupled with the other phases. Our results show that particles are transported towards the interface by jet-like turbulent motions and, once close enough, are captured by interfacial forces in regions of positive surface velocity divergence. These regions appear to be well correlated with high-enstrophy flow topologies that contribute to enstrophy production via vortex compression or stretching. Examining the turbulent mechanisms that bring particles to the interface, we have been able to derive a simple mechanistic model for particle capture. The model can predict the overall capture efficiency and is based on a single turbulent transport equation in which the only parameter scales with the turbulent kinetic energy of the fluid measured in the vicinity of the drop interface. The model is valid in the limit of non-interacting particles and its predictions agree remarkably well with numerical results.

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