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Comparison of surface tension generation methods in smoothed particle hydrodynamics for dynamic systems

机译:动态系统平滑粒子流体动力学表面张力发电方法的比较

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摘要

Developing robust numerical models of surface tension dominated dynamic multiphase systems is an ongoing challenge, especially in scenarios with large density and viscosity ratios. This is critical to the design and understanding of various physical and engineering systems, such as three-phase fluidized beds, fuel injectors, and drug delivery schemes. Much of the computational work in surface tension dominated multiphase flows has employed the continuum surface force method (CSF) of Brackbill et al. (1992), which recasts surface tension from a surface force to a volumetric force that can be imposed in the vicinity of an interface. The CSF method produces accurate results across a variety of systems, however it relies on the identification of surface normals, which can be unreliable under certain conditions. Alternative methods of simulating surface tension have been proposed. This work uses smoothed particle hydrodynamics (SPH), a particle based computational fluid dynamics method, as the framework for exploring the advantages and disadvantages of the CSF method in comparison to a pairwise forces (PF) method proposed by Tartakovsky and Panchenko (2016). Dynamic systems are modeled and the results are compared to existing test cases from the literature and to analytic solutions derived from fundamental normal mode behavior of bubbles and droplets. Initial studies of droplet-droplet collisions, a physical system for which the PF method is more stable and physically appropriate than the CSF method, are described. (C) 2020 Elsevier Ltd. All rights reserved.
机译:发展稳健的表面张力的鲁棒数值模型主导的动态多相体系是一个持续的挑战,特别是在具有较大密度和粘度比的情景中。这对各种物理和工程系统的设计和理解至关重要,例如三相流化床,燃料喷射器和药物递送方案。表面张力主导的多相流中的大部分计算工作采用Brackbill等人的连续表面力量(CSF)。 (1992),从表面力重新旋转表面张力,以在界面附近施加的体积力。 CSF方法在各种系统上产生准确的结果,但是它依赖于表面法线的识别,这在某些条件下可能不可靠。已经提出了模拟表面张力的替代方法。该作品使用平滑的粒子流体动力学(SPH),一种基于粒子的计算流体动力学方法,作为探索CSF方法的框架,与Tartakovsky和Panchenko(2016)提出的一对力(PF)方法相比。动态系统是建模的,结果与来自文献的现有测试用例和来自气泡和液滴的基本正常模式行为的分析溶液进行比较。描述了液滴 - 液滴冲突的初步研究,描述了PF方法更稳定和物理上比CSF方法的物理系统。 (c)2020 elestvier有限公司保留所有权利。

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