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面向异构超算的结构分析高效并行计算方法
引用本文:丁峻宏,苗新强,李根国.面向异构超算的结构分析高效并行计算方法[J].计算机工程与科学,2020,42(12):2133-2140.
作者姓名:丁峻宏  苗新强  李根国
作者单位:(1.上海超算科技有限公司,上海 201203;2.中国电子科技集团公司第五十一研究所,上海 201802; 3.上海超级计算中心,上海 201203)
基金项目:国家重点研发计划;上海市工业互联网创新发展专项
摘    要:

关 键 词:并行计算  异构超算  结构分析  负载均衡  
收稿时间:2020-03-17
修稿时间:2020-07-20

An efficient parallel computing method for structural analysis based on heterogeneous supercomputer
DING Jun-hong,MIAO Xin-qiang,LI Gen-guo.An efficient parallel computing method for structural analysis based on heterogeneous supercomputer[J].Computer Engineering & Science,2020,42(12):2133-2140.
Authors:DING Jun-hong  MIAO Xin-qiang  LI Gen-guo
Affiliation:(1.Shanghai Supercomputing Technology Co.,Ltd.,Shanghai 201203; 2.The 51st Research Institute of China Electronics Technology Group Corporation,Shanghai 201802; 3.Shanghai Supercomputer Center,Shanghai 201203,China)
Abstract:In order to exploit the efficient computing power of many integrated cores on heterogeneous cluster, a multi-level and multi-granularity collaborative parallel computing method is proposed for finite element structural mechanical analysis. Computing tasks are divided into three levels: inter-node parallelism, inter-device parallelism and inter-core parallelism. Through mapping decomposablecomput- ing jobs to different hardware layers of heterogeneous MIC system, the proposed method not only effectively resolves the load balancing problem between CPU and MIC devices, but also significantly reduces the communication overheads of the system. Different engineering simulation case experiments for large scale parallel computing were conducted on “Tianhe 2” supercomputer. Up to 39000 CPU+MIC cores were employed and the finite element size of the analysis was more than 100 million units. Test results show that the proposed method can achieve good speedup and parallel computing efficiency in large scale parallel computing of finite element structural analysis. The optimized adaptation of finite element structural analysis and heterogeneous MIC computing platform is realized, which can provide reference for parallel porting and performance optimization of similar applications.
Keywords:parallel computing  heterogeneous supercomputer  structural analysis  load balance  
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