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A coupled volume-of-fluid and level-set method (VOSET) for capturing interface of two-phase flows in arbitrary polygon grid

机译:用于捕获任意多边形网格中两相流界面的流体体积和水平集的耦合方法(VOSET)

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摘要

This article presents an extension of coupled volume-of-fluid and level-set method (VOSET) for simulating free surfaces flows in arbitrary 2D polygon meshes. A series of techniques are introduced for geometric calculations in convex polygons. Newton iteration is adopted for the interface reconstruction in polygons, and incremental remapping approach is employed for the propagation of the volume fractions. The interface tracking test results suggested a second order accuracy in mixed and hexagonal grids. For the validation purpose, a Rayleigh-Taylor instability problem, a liquid column collapse problem and a single bubble rising problem were numerically studied, and the obtained results show excellent agreements with experimental data and benchmark solutions in literatures. Finally the proposed VOSET method was applied in simulating the working process of a flow-focusing microfluidic droplet generator. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于模拟任意2D多边形网格中自由表面流动的流体体积和水平集耦合方法(VOSET)的扩展。引入了一系列技术来进行凸多边形的几何计算。采用牛顿迭代法进行多边形的界面重建,采用增量重映射的方法进行体积分数的传播。界面跟踪测试结果表明,混合网格和六边形网格具有二阶精度。为了验证目的,对瑞利-泰勒不稳定性问题,液柱塌陷问题和单个气泡上升问题进行了数值研究,所得结果与文献中的实验数据和基准解决方案显示出极好的一致性。最后,将所提出的VOSET方法应用于模拟流聚焦微流液滴发生器的工作过程。 (C)2019 Elsevier Ltd.保留所有权利。

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