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An ISPH scheme for numerical simulation of multiphase flows with complex interfaces and high density ratios

机译:具有复杂界面和高密度比的多相流数值模拟的ISPH方案

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Multiphase problems with high density ratios and complex interfaces deal with numerical instabilities and require accurate considerations for capturing the multiphase interfaces. An Incompressible Smoothed Particle Hydrodynamics (ISPH) scheme is presented to simulate such problems. In order to keep the present scheme simple and stable, well-established formulations are used for discretizing the spatial derivatives and a repulsive force is applied at the multiphase interface between particles of different fluids to maintain the interface sharpness. Special considerations are included to overcome the difficulties to model severe physical discontinuities at the interface and surface tension effects are taken into account. Different particle shifting schemes are also tested for a range of problems. Several two phase flows are investigated and the presented scheme is validated against both analytical and numerical solutions, A detailed study is also carried out on the influence of the repulsive force in an ISPH scheme showing that this simple treatment efficiently enhances the interface capturing features. The comparisons indicate that the proposed scheme is robust and capable of simulating a wide range of multiphase problems with complex interfaces including low to high ratios for density and viscosity. (C) 2018 The Author(s). Published by Elsevier Ltd.
机译:具有高密度比和复杂界面的多相问题处理了数值不稳定性,并需要精确考虑以捕获多相界面。提出了不可压缩的平滑粒子流体动力学(ISPH)方案来模拟此类问题。为了保持本方案简单和稳定,使用公认的配方来离散空间导数,并且在不同流体的颗粒之间的多相界面处施加排斥力以保持界面清晰度。包括特殊的考虑因素,以克服难以对界面处严重物理不连续进行建模的困难,并考虑了表面张力效应。还针对各种问题测试了不同的粒子迁移方案。研究了几个两相流,并针对解析和数值解验证了所提出的方案,还对ISPH方案中的排斥力的影响进行了详细研究,结果表明,这种简单处理有效地增强了界面捕获功能。比较表明,所提出的方案是鲁棒的,并且能够模拟复杂界面的多种多相问题,包括低密度比和高密度比。 (C)2018作者。由Elsevier Ltd.发布

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