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A balanced-force control volume finite element method for interfacial flows with surface tension using adaptive anisotropic unstructured meshes

机译:自适应各向异性非结构网格的表面张力界面流平衡力控制体积有限元方法

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A balanced-force control volume finite element method is presented for three-dimensional interfacial flows with surface tension on adaptive anisotropic unstructured meshes. A new balanced-force algorithm for the continuum surface tension model on unstructured meshes is proposed within an interface capturing framework based on the volume of fluid method, which ensures that the surface tension force and the resulting pressure gradient are exactly balanced. Two approaches are developed for accurate curvature approximation based on the volume fraction on unstructured meshes. The numerical framework also features an anisotropic adaptive mesh algorithm, which can modify unstructured meshes to better represent the underlying physics of interfacial problems and reduce computational effort without sacrificing accuracy. The numerical framework is validated with several benchmark problems for interface advection, surface tension test for equilibrium droplet, and dynamic fluid flow problems (fluid films, bubbles and droplets) in two and three dimensions. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:针对自适应各向异性非结构网格上具有表面张力的三维界面流动,提出了一种平衡力控制体积有限元方法。在基于流体体积的界面捕获框架内,提出了一种新的平衡力算法,用于非结构化网格上的连续表面张力模型,该算法可确保表面张力与所产生的压力梯度完全平衡。针对非结构化网格上的体积分数,开发了两种方法来进行精确的曲率逼近。该数值框架还具有各向异性自适应网格算法,该算法可以修改非结构化网格以更好地表示界面问题的基本物理原理,并在不牺牲准确性的情况下减少计算量。数值框架通过以下几个方面进行了验证:界面对流,平衡液滴的表面张力测试以及二维和三维动态流体流动问题(流体膜,气泡和液滴)。 (C)2016作者。由Elsevier Ltd.发布

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