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A finite element strategy for the solution of interface tracking problems

机译:界面跟踪问题解决的有限元策略

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摘要

A finite element-based numerical strategy for interface tracking is developed for the simulation of two-phase flows. The method is based on the solution of an advection equation for the so-called 'pseudo-concentration' of one of the phases. To obtain an accurate description of the interface, a streamline upwind Petrov-Galerkin (SUPG) scheme is combined with an automatic mesh refinement procedure and a filtering technique, making it possible to generate an oscillation-free pseudo-concentration field. The performance of the proposed approach is successfully tested on four classical two-dimensional benchmark problems: the advection skew to the mesh, the transport of a square shape in a constant velocity flow field, the transport of a cut-out cylinder in a rotating flow field and the transport of a disc in a shear flow. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:开发了用于界面跟踪的有限元数值策略,用于模拟两相流。 该方法基于用于所谓的一个相位的“伪浓度”的平流方程的解决方案。 为了获得接口的准确描述,将流线升起Petrov-Galerkin(SUPG)方案与自动网格细化程序和滤波技术组合,使得可以产生无振荡的伪浓度场。 所提出的方法的性能成功地测试了四个经典二维基准问题:前进偏斜到网状物,在恒定速度流场中运输方形,在旋转流动中传输切口圆柱体 领域和剪切流中的盘的运输。 版权所有(c)2005 John Wiley&Sons,Ltd。

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