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A combined Lattice-Boltzmann method for the simulation of two-phase flows in microchannel

机译:组合的Lattice-Boltzmann方法模拟微通道中的两相流

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摘要

A new Lattice-Boltzmann method (LBM) is developed for the simulation of two-phase microflows. In this method, the phase separation is realized using Latva-Kokko redistribution scheme while the interfacial tension stress is computed according to Shan & Chen's expression. Introducing a redistribution step after the particle collision in Shan & Chen's LBM improves the algorithm stability and enforces a constant interface thickness independent of the interfacial tension. As a result, it provides independent control of the interfacial tension with little sensitivity to the viscosity. The interface curvature is easier to obtain in comparison to usual continuum surface force (CSF) and the spurious currents can be kept as low as in the color-field method. This hybrid LBM algorithm is validated by simulating a droplet deformation between two shearing plates and its capabilities demonstrated by experiments in the case of bubble generation in a T-junction microchannel using air/ethanol as the working system.
机译:开发了一种新的莱迪思-玻尔兹曼方法(LBM)来模拟两相微流。在这种方法中,使用Latva-Kokko重新分配方案实现了相分离,同时根据Shan&Chen的表达式计算了界面张力。在Shan&Chen的LBM中,在粒子碰撞之后引入重新分配步骤可以提高算法的稳定性,并实现与界面张力无关的恒定界面厚度。结果,它提供了对界面张力的独立控制,而对粘度几乎没有敏感性。与通常的连续表面力(CSF)相比,更容易获得界面曲率,并且杂散电流可以保持与色域法一样低。该混合LBM算法通过模拟两个剪切板之间的液滴变形进行了验证,并且通过在使用空气/乙醇作为工作系统的T型接头微通道中产生气泡的情况下的实验证明了其功能。

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