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An enriched finite element/level-set method for simulating two-phase incompressible fluid flows with surface tension

机译:一种富集的有限元/水平设定方法,用于模拟具有表面张力的两相不可压缩流体流动

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A finite element method is introduced to simulate surface tension dominated flow of two immiscible fluids featuring an enriched space for capturing both strong and weak pressure discontinuities. The proposed enriched finite element space is created utilizing the standard finite element shape functions. Discontinuities are captured by adding merely one additional degree of freedom per each node of the elements cut by the interface. Being local to the cut elements, these additional degrees of freedom are eliminated before assembling the global system of equations following a condensation procedure. The method is stabilized introducing a procedure for improving the conditioning of the enriched pressure contribution to the stiffness matrix in small-cut situations. An improved smoothing strategy based on an artificial diffusion equation is proposed to enhance the performance of the method on rather coarse meshes. A series of three-dimensional two-phase fluid flow benchmarks are solved to assess the performance of the method. Particular attention is paid to surface tension dominated cases. The method is verified by showing its accuracy in capturing strong pressure discontinuity at the interface of a spherical droplet as well as its capability in handling large pressure gradient discontinuity in a hydrostatic liquid-gas container. The method is further validated by simulating oscillations of a slightly disturbed spherical droplet. The mass conservation property of the method and the effect of the smoothing procedure on the result is assessed by simulating the oscillations of a prolate droplet. Ultimately, the method is tested in a more challenging setting by simulating the rising gas bubble inside a liquid domain. (C) 2020 Elsevier B.V. All rights reserved.
机译:引入有限元方法以模拟两个不混溶的流体的表面张力主导流,其具有富集的空间,用于捕获强大的压力不连续性。利用标准有限元形状函数创建提出的富集的有限元空间。仅通过接口切割的元素的每个节点添加一个额外的自由度来捕获不连续性。在剪切元件的地方,在组装冷凝过程之后在组装全球方程式之前消除了这些额外的自由度。该方法是稳定的,引入了改善小剪切情况下改善对刚度基质的富集压力贡献的过程。提出了一种基于人工扩散方程的改进的平滑策略,以增强在相当粗网格上的方法的性能。解决了一系列三维两相流体流动基准,以评估该方法的性能。特别注意表面紧张主导地位。通过在捕获球面液滴的界面处捕获强大的压力不连续的精度以及其在静水液 - 气体容器中处理大的压力梯度不连续性的能力来验证该方法。通过模拟稍微干扰的球面液滴的振荡进一步验证该方法。通过模拟改性液滴的振荡来评估方法的质量保护性和平滑过程的效果。最终,通过模拟液域内的上升气泡,在更具有挑战性的环境中测试该方法。 (c)2020 Elsevier B.v.保留所有权利。

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