Massive parallel simulation of gas turbine combustion using a fully implicit unstructured solver on the heterogeneous Sunway Taihulight supercomputer

IF 3.4 3区 计算机科学 Q1 COMPUTER SCIENCE, THEORY & METHODS
Fei Gao , Hu Ren , Zhuyin Ren , Ming Liu , Chengpeng Zhao , Guangwen Yang
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引用次数: 0

Abstract

Massive parallel simulations of a full annular aeroengine combustor chamber have been achieved on the on-chip heterogeneous Sunway Taihulight supercomputer. A billion-size unstructured mesh is generated through grid replication and rotation, accompanied by the development of an efficient geometric matching algorithm to address the conformal interface issue. We developed graph-based and tree-based loop fusion approaches for implicit solving procedure of the momentum equation, it is found that the strategic utilization of data reuse and separation of vector computation significantly enhances the performance on many-core processor. For linear system, a finer-grained parallelization based on sparse matrix-vector multiplication and vector computation is validated. Massive parallel tests utilizing 16 K processes with 1 M cores are successfully conducted to simulate the turbulent non-premixed combustion in an aeroengine combustor with nearly one billion cells. Compared to the pre-optimization version, this fully accelerated code achieves an impressive 5.48 times speedup in overall performance, with a parallel efficiency of up to 59 %.
基于全隐式非结构求解器在神威太湖之光异构超级计算机上的燃气轮机燃烧大规模并行模拟
在片上异构的神威“太湖之光”超级计算机上实现了全环形航空发动机燃烧室的大规模并行仿真。通过网格复制和旋转生成十亿大小的非结构化网格,同时开发了有效的几何匹配算法来解决保形界面问题。针对动量方程的隐式求解过程,提出了基于图的和基于树的循环融合方法,发现数据重用和矢量计算分离的策略利用显著提高了多核处理器上的性能。对于线性系统,验证了基于稀疏矩阵-向量乘法和向量计算的细粒度并行化方法。利用16 K过程和1 M芯成功地模拟了航空发动机近10亿个燃烧室的湍流非预混燃烧。与预优化版本相比,这个完全加速的代码在整体性能上实现了令人印象深刻的5.48倍加速,并行效率高达59%。
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来源期刊
Journal of Parallel and Distributed Computing
Journal of Parallel and Distributed Computing 工程技术-计算机:理论方法
CiteScore
10.30
自引率
2.60%
发文量
172
审稿时长
12 months
期刊介绍: This international journal is directed to researchers, engineers, educators, managers, programmers, and users of computers who have particular interests in parallel processing and/or distributed computing. The Journal of Parallel and Distributed Computing publishes original research papers and timely review articles on the theory, design, evaluation, and use of parallel and/or distributed computing systems. The journal also features special issues on these topics; again covering the full range from the design to the use of our targeted systems.
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