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Unified adaptive Variational MultiScale method for two phase compressible-incompressible flows

机译:两相可压缩不可压缩流的统一自适应变分多尺度方法

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In this paper we present a new stabilized finite element method to solve the two phase compressible-incompressible fluid flow problems using the level set method. An anisotropic mesh adaptation with a regularized interface is adopted to deal with the high discontinuity in the material properties. The coupling between the pressure and the flow velocity is ensured by introducing mass conservation terms in the momentum equation. Therefore, the same set of primitive unknowns and equations is described for both phases. The unified system is solved using a new derived Variational MultiScale stabilized finite element method. It is tested on three time-dependent liquid-gas interface problems. The numerical results show good stability and accuracy properties, permitting also to deal with important compressibility effect, high density ratio, and extremely stretched anisotropic elements. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,我们提出了一种新的稳定有限元方法,用于使用水平集方法来解决两相可压缩-不可压缩流体流动问题。采用具有规则界面的各向异性网格自适应来处理材料特性中的高不连续性。通过在动量方程中引入质量守恒项,可以确保压力与流速之间的耦合。因此,两个阶段都描述了相同的一组原始未知数和方程式。使用新派生的变分多尺度稳定有限元方法求解统一系统。在三个与时间有关的液-气界面问题上进行了测试。数值结果显示出良好的稳定性和精确性,还可以处理重要的压缩效果,高密度比和极度拉伸的各向异性元素。 (C)2016 Elsevier B.V.保留所有权利。

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