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Framework for massively parallel adaptive finite element computational fluid dynamics on tetrahedral meshes

机译:四面体网格上大规模并行自适应有限元计算流体动力学的框架

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In this paper we describe a general adaptive finite element framework for unstructured tetrahedral meshes without hanging nodes suitable for large scale parallel computations. Our framework is designed to scale linearly to several thousands of processors, using fully distributed and efficient algorithms. The key components of our implementation, local mesh refinement and load balancing algorithms, are described in detail. Finally, we present a theoretical and experimental performance study of our framework, used in a large scale computational fluid dynamics computation, and we compare scaling and complexity of different algorithms on different massively parallel architectures.
机译:在本文中,我们描述了一种适用于非结构化四面体网格的通用自适应有限元框架,其中没有适合大型并行计算的悬挂节点。我们的框架旨在使用完全分布式且高效的算法来线性扩展至数千个处理器。详细介绍了我们实施的关键组成部分,局部网格细化和负载平衡算法。最后,我们对框架进行了理论和实验性能研究,用于大规模计算流体动力学计算,并且比较了不同大规模并行体系结构上不同算法的缩放和复杂性。

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