Bibliographic Details
| Title: |
天河超级计算机上 超大规模高精度计算流体力学并行计算研究进展. |
| Alternate Title: |
Research progresses of large-scale parallel computing for high-order CFD on the Tianhe supercomputer. |
| Authors: |
徐传福1,2 xuchuanfu@nudt.edu.cn, 车永刚1,2 ygche@nudt.edu.cn, 李大力2 achhx@nudt.edu.cn, 王勇献3 yxwang@nudt.edu.cn, 王正华2 zhhwang@nudt.edu.cn |
| Source: |
Computer Engineering & Science / Jisuanji Gongcheng yu Kexue. Oct2020, Vol. 42 Issue 10, p1815-1826. 12p. |
| Abstract (English): |
The rapid progress of high performance computing (HPC) technology provides a solid foundation for large-scale complex computational fluid dynamics (CFD) applications. In recent years, heterogeneous architectures have evolved to be one of the most important methods for developing largescale HPC systems. Heterogeneous HPC systems with different processing capabilities, memory availability, and communication latencies make the development and optimization of large-scale CFD applications exceptionally difficult. NUDT is a research base for HPC systems in China,and the CFD application team of NUDT has long been devoted to parallelize and optimize large-scale complex CFD software on the Tianhe/Yinhe series supercomputers. They have tackled some key technologies such as heterogeneous collaborative parallel computing and preliminarily realized the convergence of HPC and CFD. Due to their efforts,some important In-house CFD software in China have been ported and run efficiently on the Tianhe/Yinhe series supercomputers. This paper summarizes some important research progresses of large-scale parallel computing for high-order CFD on Tianhe-2, and analyzes some problems of CFD application development on the forthcoming exasale supercomputers. [ABSTRACT FROM AUTHOR] |
| Abstract (Chinese): |
高性能计算(HPC)技术的迅猛发展为大规模复杂计算流体力学(CFD)应用提供了重要支 撑。近年来,"通用处理器+众核加速器"的异构体系结构已成为研制超大规模高性能计算机的重要技术 途径之一。弄构高性能计算机不仅包含海量的异构处理器核,同时具有异构存储层次、通信方式和编程环 境,极大增加了 CFD等并行应用开发、优化的难度。国防科技大学是我国高性能计算机系统研制与应用 开发的基地,长期以来,学校CFD应用软件团队依托天河/银河系列超级计算机开展了超大规模复杂 CFD并行计算和性能优化研究,突破了异构协同并行计算等一系列关键技术,初步实现了 HPC与CFD 的深度融合,有力支撑了我国几套重要的In-house CFD软件在天河/银河系列超级计算机上的高效超大 规模并行应用。归纳总结了天河超级计算机上超大规模高精度CFD并行计算研究进展,并对未来E级 超级计算机上CFD并行应用开发进行了分析展望. [ABSTRACT FROM AUTHOR] |
| Database: |
Academic Search Index |