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Advances in co-volume mesh generation and mesh optimisation techniques

机译:同体积网格生成和网格优化技术的进展

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This paper introduces developments in modified techniques for the generation of unstructured, nonuniform, dual orthogonal meshes which are suitable for use with co-volume solution schemes. Two new mesh generation techniques, a modified advancing front technique and an octree-Delaunay algorithm, are coupled with a mesh optimisation algorithm. When using a Delaunay Voronoi dual, to construct mutually orthogonal meshes for co-volume schemes, it is essential to minimise the number of Delaunay elements which do not contain their Voronoi vertex. These new techniques provide an improvement over previous approaches, as they produce meshes in which the number of elements that do not contain their Voronoi vertex is reduced. In particular, it is found that the optimisation algorithm, which could be applied to any mesh cosmetics problem, is very effective, regardless of the quality of the initial mesh. This is illustrated by applying the proposed approach to a number of complex industrial aerospace geometries.(C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了用于生成非结构化,非均匀,双重正交网格的改进技术的发展,这些网格适用于同体积解决方案。两种新的网格生成技术,一种改进的高级行进技术和octree-Delaunay算法与网格优化算法结合在一起。使用Delaunay Voronoi对偶时,要为同体积方案构造相互正交的网格,必须将不包含其Voronoi顶点的Delaunay元素的数量最小化。这些新技术提供了对以前方法的改进,因为它们产生的网格减少了其中不包含Voronoi顶点的元素的数量。特别是,发现可以应用于任何网格化妆品问题的优化算法非常有效,而与初始网格的质量无关。通过将建议的方法应用到许多复杂的工业航空几何中可以说明这一点。(C)2016 Elsevier Ltd.保留所有权利。

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