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Simulation of Droplets Collisions Using Two-Phase Entropic Lattice Boltzmann Method

机译:两相熵格子Boltzmann方法模拟液滴碰撞

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摘要

The recently introduced entropic lattice Boltzmann model for multiphase flows (Mazloomi et al. in Phys Rev Lett 114:174502, 2015) is used to simulate binary droplet collisions. The entropy-based stabilization, together with a new polynomial equation of state, enhances performance of the model and allow us to simulate droplet collision for various Weber and Reynolds numbers and large liquid to vapor density ratio. Different types of droplet collision outcomes, namely coalescence, stretching separation and reflexive separation are recovered in a range of impact parameter for two equal sized droplets. The results demonstrated the essential role played by the surface tension, kinematic viscosity, impact parameter and relative velocity in the droplet collision dynamics leading to coalescence or separation collision outcomes. Comparison between numerical results and experiments in both coalescence and separation collisions demonstrate viability of the presented model.
机译:最近引入的用于多相流的熵格Boltzmann模型(Mazloomi等人,Phys Rev Lett 114:174502,2015)用于模拟二元液滴碰撞。基于熵的稳定性以及新的状态多项式方程,可以提高模型的性能,并允许我们针对各种韦伯和雷诺数以及较大的液汽密度比来模拟液滴碰撞。在两个相等大小的液滴的冲击参数范围内,恢复了不同类型的液滴碰撞结果,即聚结,拉伸分离和反射分离。结果表明,在液滴碰撞动力学中,表面张力,运动粘度,冲击参数和相对速度在导致聚结或分离碰撞结果中起着至关重要的作用。合并碰撞和分离碰撞中的数值结果与实验之间的比较证明了所提出模型的可行性。

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