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A robust Delaunay-AFT based parallel method for the generation of large-scale fully constrained meshes

机译:基于强大的Delaunay-AFT的并行方法,用于生成大规模完全约束网格

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Making full use of a sequential Delaunay-AFT mesher, a parallel method for the generation of large-scale tetrahedral meshes on distributed-memory machines is developed. To generate meshes with the required and the preserved properties, a Delaunay-AFT based domain decomposition (DD) technique is employed. Starting from the Delaunay triangulation (DT) covering the problem domain, this technique creates a layer of elements dividing the domain into several zones. The initially coarsely meshed domain is partitioned into DTs of subdomains which can be meshed in parallel. When the size of a subdomain is smaller than a user-specified threshold, it will be meshed with the standard Delaunay-AFT mesher. A two-level DD strategy is designed to improve the parallel efficiency of this algorithm. A dynamic load balancing scheme is also implemented using the Message Passing Interface (MPI). Out-of-core meshing is introduced to accommodate excessive large meshes that cannot be handled by the available memory of the computer (RAM). Numerical tests are performed for various complex geometries with thousands of surface patches. Ultra-large-scale meshes with more than ten billion tetrahedral elements have been created. Moreover, the meshes generated with different numbers of DD operations are nearly identical in quality: showing the consistency and the stability of the automatic decomposition algorithm. (C) 2019 Elsevier Ltd. All rights reserved.
机译:充分利用顺序Delaunay-Aft Mesher,开发了一种在分布式存储器上产生大规模四面体网格的并行方法。为了生成具有所需的网格和保存的属性,采用了德拉涅ay-AFT基于域分解(DD)技术。从覆盖问题域的Delaunay三角测量(DT)开始,该技术将为几个区域划分一系列元素。最初粗略啮合的域被划分为可以并联地啮合的子域的DTS。当子域的大小小于用户指定的阈值时,它将用标准delaunay-aft mesher网。双层DD策略旨在提高该算法的并行效率。还使用消息传递接口(MPI)来实现动态负载平衡方案。引入外核啮合以容纳不能由计算机(RAM)的可用存储器处理的过多的大网格。对具有成千上万的表面贴片的各种复杂几何形状进行数值测试。已经创建了超过10亿四面射出元素的超大型网格。此外,用不同数量的DD操作产生的网格在质量上几乎相同:显示了自动分解算法的一致性和稳定性。 (c)2019 Elsevier Ltd.保留所有权利。

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