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A 3D adaptive mesh moving scheme

机译:3D自适应网格移动方案

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摘要

This paper presents an adaptive mesh moving technique for three-dimensional (3D) fluid flow problems that involve moving fluid boundaries and fluid-solid interfaces. Such mesh moving techniques are an essential ingredient of fluid-structure interaction methods that typically employ arbitrary Lagrangian-Eulerian (ALE) frameworks. In the ALE frame, the velocity field representing motion of the underlying continuum is integrated in the fluid flow equations. In the discretized setting, the velocity field of the underlying continuum gives rise to the mesh displacement field that needs to be solved for in addition to the flow equations and the structural equations. Emphasis in the present work is on the motion and deformation of 3D grids that are composed of linear tetrahedral and hexahedral elements in structured and unstructured configurations. The proposed method can easily be extended to higher-order elements in 3D. A variety of moving mesh problems from different fields of engineering are presented that show the range of applicability of the proposed method and the class of problems that can be addressed with it.
机译:本文提出了一种适用于三维(3D)流体流动问题的自适应网格移动技术,该问题涉及移动流体边界和流固界面。这种网格移动技术是通常采用任意拉格朗日-欧拉(ALE)框架的流体-结构相互作用方法的重要组成部分。在ALE框架中,代表基础连续体运动的速度场被整合到流体流动方程中。在离散化设置中,除了流动方程式和结构方程式之外,下层连续体的速度场还产生了需要解决的网格位移场。当前工作的重点是3D栅格的运动和变形,该栅格由结构化和非结构化结构中的线性四面体和六面体元素组成。所提出的方法可以轻松地扩展到3D中的高阶元素。提出了来自不同工程领域的各种移动网格问题,这些问题表明了所提出方法的适用范围以及可以解决的问题类别。

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