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Interface-tracking and interface-capturing techniques for finite element computation of moving boundaries and interfaces

机译:用于移动边界和接口的有限元计算的接口跟踪和接口捕获技术

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We provide an overview of some of the interface-tracking and interface-capturing techniques we developed for finite element computation of flow problems with moving boundaries and interfaces. This category of flow problems includes fluid-particle, fluid-object and fluid-structure interactions; free-surface and two-fluid flows; and flows with moving mechanical components. Both classes of techniques are based on stabilized formulations. The interface-tracking techniques are based on the deforming-spatial-domain/stabilized space-time (DSD/SST) formulation, where the mesh moves to track the interface. The interface-capturing techniques, developed primarily for free-surface and two-fluid interface flows, are formulated typically over non-moving meshes, using an advection equation in addition to the flow equations. The advection equation governs the evolution of an interface function that marks the location of the interface. We also highlight some of the methods we developed to increase the scope and accuracy of these two classes of techniques.
机译:我们概述了我们开发的一些接口跟踪和接口捕获技术,这些技术是针对边界和接口移动的流动问题进行有限元计算的。这类流动问题包括流体-颗粒,流体-物体和流体-结构的相互作用。自由表面和二流体流动;并随着移动的机械组件而流动。这两类技术均基于稳定的配方。界面跟踪技术基于变形空间域/稳定时空(DSD / SST)公式,其中网格物体移动以跟踪界面。主要为自由表面和双流体界面流开发的界面捕获技术通常是在非运动网格上制定的,除了使用流动方程外,还使用平流方程。对流方程控制着标记界面位置的界面函数的演化。我们还将重点介绍一些为提高这两类技术的范围和准确性而开发的方法。

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