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A locally extended finite element method for the simulation of multi-fluid flows using the Particle Level Set method

机译:使用粒子水平集方法模拟多流体流动的局部扩展有限元方法

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The simulation of immiscible two-phase flows on Eulerian meshes requires the use of special techniques to guarantee a sharp definition of the evolving fluid interface. This work describes the combination of two distinct technologies with the goal of improving the accuracy of the target simulations. First of all, a spatial enrichment is employed to improve the approximation properties of the Eulerian mesh. This is done by injecting into the solution space new features to make it able to correctly resolve the solution in the vicinity of the moving interface. Then, the Lagrangian Particle Level Set (PLS) method is employed to keep trace of the evolving solution and to improve the mass conservation properties of the resulting method. While the local enrichment can be understood in the general context of the XFEM, we employ an element-local variant, which allows preserving the matrix graph, and hence highly improving the computational efficiency. (C) 2015 Elsevier B.V. All rights reserved.
机译:在欧拉网格上模拟不混溶的两相流需要使用特殊的技术来保证对演化中的流体界面的清晰定义。这项工作描述了两种不同技术的结合,目的是提高目标仿真的准确性。首先,采用空间富集来改善欧拉网格的近似性质。这是通过将新功能注入解决方案空间来使其能够正确解决移动界面附近的解决方案来完成的。然后,采用拉格朗日粒子水平集(PLS)方法来跟踪不断演化的溶液,并改善所得方法的质量守恒性能。虽然可以在XFEM的一般上下文中理解局部富集,但是我们采用了元素局部变体,该变体可以保留矩阵图,从而极大地提高了计算效率。 (C)2015 Elsevier B.V.保留所有权利。

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