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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Improved Feasible-Set Method for Removing Mesh Inversion
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Improved Feasible-Set Method for Removing Mesh Inversion

机译:改进了删除网格反转的可行性设置方法

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摘要

This paper presents a new computational method based on the feasible-set method (Berndt, Kucharik, and Shashkov, 2010, "Using the Feasible Set Method for Rezoning in ALE," Pro-cedia Comput., 1(1), pp. 1879-1886 and Vachal, Garimella, and Shashkov, 2004, "Untangling of 2D Meshes in ALE Simulations," J. Comput. Phys., 196, pp. 627-644) for removing inverted elements in surface and volume meshes. The proposed method calculates a region for each node called a "feasible set" in which the node can reside without creating an inverted element. The node is then relocated within the region so that the number of inverted elements is reduced. Unlike the original feasible-set method, it is applicable to nonplanar surface meshes, volume meshes, and also has a step for recovering a feasible set when the set is empty. While various useful mesh optimization techniques have been proposed over several decades, many of them do not work well if the initial mesh has inverted elements. Additionally, some mesh optimizations create new inverted elements when the mesh topology is highly irregular. The goal of the proposed method is to remove mesh inversion without creating a new inverted element. The proposed method is useful for preconditioning for conventional smoothing techniques, which require that the initial mesh be inversion free. It is also useful for correcting inverted elements created by conventional smoothing techniques. The effectiveness of the improved method has been verified by applying it to the facet-repair and the boundary-layer generation problems.
机译:本文介绍了一种基于可行集合方法(Berndt,Kucharik和Shashkov,2010的新的计算方法,使用可行的集合方法在ALE中重新划分,“Pro-CEDIA Comput。,1(1),PP。1879 -1886和vachal,加里米拉和Shashkov,2004年,“Ale模拟中的2D网格”,J. Comput。opply。,196,pp.627-644),用于去除表面和体积网中的倒置元件。该方法计算每个节点的区域,称为“可行集”,其中节点可以驻留而不创建反相元素。然后将节点重新定位在区域内,使得倒置元件的数量减小。与原始可行的设置方法不同,它适用于非平面曲面网格,卷网格,并且还具有恢复当设置为空时可行的可行集的步骤。虽然在几十年内提出了各种有用的网格优化技术,但如果初始网格具有反相元素,其中许多则不起作用。此外,某些网状优化在网状拓扑高度不规则时创建新的反转元素。所提出的方法的目标是消除网格反转而不创建新的反转元件。所提出的方法对于传统平滑技术的预处理是有用的,这要求初始网格自由倒置。它对于校正通过传统平滑技术产生的倒置元件也是有用的。通过将改进方法应用于方面修复和边界层产生问题已经验证了改进方法的有效性。

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