涡轮机械
软件可移植性
计算机科学
可扩展性
空气动力学
计算科学
国际商用机器公司
解算器
并行计算
计算流体力学
计算
分布式计算
航空航天工程
操作系统
工程类
纳米技术
材料科学
程序设计语言
算法
作者
Yuhang Fu,Weiqi Shen,Jiahuan Cui,Yao Zheng,Guangwen Yang,Zhao Liu,Jifa Zhang,Tingwei Ji,Fangfang Xie,Xiaojing Lv,Hanyue Liu,Xu Liu,Xiyang Liu,Xiaoyu Song,Guocheng Tao,Yan Yan,Paul G. Tucker,Steven A. Miller,Shirui Luo,Seid Korić
标识
DOI:10.1145/3581784.3627040
摘要
A state-of-the-art large eddy simulation code has been developed to solve compressible flows in turbomachinery. The code has been engineered with a high degree of scalability, enabling it to effectively leverage the many-core architecture of the new Sunway system. A consistent performance of 115.8 DP-PFLOPs has been achieved on a high-pressure turbine cascade consisting of over 1.69 billion mesh elements and 865 billion Degree of Freedoms (DOFs). By leveraging a high-order unstructured solver and its portability to large heterogeneous parallel systems, we have progressed towards solving the grand challenge problem outlined by NASA [1], which involves a time-dependent simulation of a complete engine, incorporating all the aerodynamic and heat transfer components.
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