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英文:A domain partitioning method using a multi-phase-field model for block-based AMR applications 
著者
和文: 渡辺 勢也, 青木 尊之, 高木 知弘.  
英文: Seiya Watanabe, Takayuki Aoki, Tomohiro Takaki.  
言語 English 
掲載誌/書名
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英文:Parallel Computing 
巻, 号, ページ Volume 97        Article 102647
出版年月 2020年10月1日 
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開催地
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公式リンク https://www.sciencedirect.com/science/article/pii/S0167819120300405
 
DOI https://doi.org/10.1016/j.parco.2020.102647
アブストラクト In distributed implementations of memory-bound stencil AMR applications, the inter-node communication time often represents a major performance bottleneck. Thus minimizing communication is an objective as important as maintaining a good load balance. We propose a new domain partitioning method for block-based AMR applications based on the multi-phase-field (MPF) model. The MPF model for polycrystalline growth minimizes the interfacial energy and forms a convex shape for each crystal grain. In our method, each phase of the MPF model represents a computational sub-domain of each MPI process. We apply the proposed partitioning method to a block-based AMR application for an interface capturing on multiple GPUs. We measured the strong scalability up to 256 GPUs on the TSUBAME3.0 supercomputer at Tokyo Institute of Technology. The proposed MPF partitioning can successfully improve the strong scalability and reduce the communication cost of a block-based stencil AMR application.

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