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Simplex space‐time meshes in two‐phase flow simulations
Authors:Violeta Karyofylli  Markus Frings  Stefanie Elgeti  Marek Behr
Institution:Chair for Computational Analysis of Technical Systems (CATS), RWTH Aachen University, Germany
Abstract:In this paper, we present the numerical solution of 2‐phase flow problems of engineering significance with a space‐time finite element method that allows for local temporal refinement. Arbitrary temporal refinement is applied to preselected regions of the mesh and is governed by a quantity that is part of the solution process, namely, the interface position in 2‐phase flow. Because of local effects such as surface tension, jumps in material properties, etc, the interface can in general be considered a region that requires high flexibility and high resolution, both in space and in time. The new method, which leads to tetrahedral (for 2D problems) and pentatope (for 3D problems) meshes, offers an efficient yet accurate approach to the underlying 2‐phase flow problems.
Keywords:discontinuous‐in‐time Galerkin  evolving front  level‐set  space‐time finite elements  space‐time  simplex  2‐phase flow
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