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LayTracks: a new approach to automated geometry adaptive quadrilateral mesh generation using medial axis transform

机译:LayTracks:使用中间轴变换自动生成几何自适应四边形网格的新方法

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摘要

A new mesh generation algorithm called ‘LayTracks’, to automatically generate an all quad mesh that is adapted to the variation of geometric feature size in the domain is described. LayTracks combines the merits of two popular direct techniques for quadrilateral mesh generation—quad meshing by decomposition and advancing front quad meshing. While the MAT has been used for the domain decomposition before, this is the first attempt to use the MAT, for the robust subdivision of a complex domain into a well defined sub-domain called ‘Tracks’, for terminating the advancing front of the mesh elements without complex interference checks and to use radius function for providing sizing function for adaptive meshing. The process of subdivision of a domain is analogous to, formation of railway tracks by laying rails on the ground. Each rail starts from a node on the boundary and propagates towards the medial axis (MA) and then from the MA towards the boundary. Quadrilateral elements are then obtained by placing nodes on these rails and connecting them inside each track, formed by adjacent rails. The algorithm has been implemented and tested on some typical geometries and the quality of the output mesh obtained are presented. Extension of this technique to all hexahedral meshing is discussed.
机译:描述了一种称为“ LayTracks”的新网格生成算法,该算法可自动生成一个全四边形网格,以适应域中几何特征尺寸的变化。 LayTracks结合了用于四边形网格生成的两种流行的直接技术的优点-通过分解的四边形网格划分和先进的前四边形网格划分。虽然MAT之前曾用于域分解,但这是首次尝试使用MAT,用于将复杂域可靠地细分为定义明确的子域(称为“轨迹”),以终止网格的前进前沿元素,无需复杂的干涉检查,并使用半径函数为自适应网格划分提供尺寸函数。细分区域的过程类似于通过在地面铺设铁轨来形成铁轨。每个轨道从边界上的一个节点开始,并向中间轴(MA)传播,然后从MA向边界传播。然后,通过将节点放置在这些轨道上并将它们连接到由相邻轨道形成的每个轨道内部,来获得四边形元素。该算法已在一些典型的几何图形上实现并进行了测试,并给出了获得的输出网格的质量。讨论了将该技术扩展到所有六面体网格的方法。

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