会议论文详细信息
2017 4th International Conference on Advanced Materials, Mechanics and Structural Engineering
Parallel Calculations in LS-DYNA
材料科学;机械制造
Mkrtychev, Oleg Vartanovich^1 ; Reshetov, Andrey Aleksandrovich^1
Moscow State University of Civil Engineering, National Research University, Moscow, Russia^1
关键词: Cluster architecture;    Clustered computing;    Computing system;    Network communications;    Numeric solutions;    Parallel calculation;    Powerful systems;    Structural mechanics;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/269/1/012068/pdf
DOI  :  10.1088/1757-899X/269/1/012068
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

Nowadays, structural mechanics exhibits a trend towards numeric solutions being found for increasingly extensive and detailed tasks, which requires that capacities of computing systems be enhanced. Such enhancement can be achieved by different means. E.g., in case a computing system is represented by a workstation, its components can be replaced and/or extended (CPU, memory etc.). In essence, such modification eventually entails replacement of the entire workstation, i.e. replacement of certain components necessitates exchange of others (faster CPUs and memory devices require buses with higher throughput etc.). Special consideration must be given to the capabilities of modern video cards. They constitute powerful computing systems capable of running data processing in parallel. Interestingly, the tools originally designed to render high-performance graphics can be applied for solving problems not immediately related to graphics (CUDA, OpenCL, Shaders etc.). However, not all software suites utilize video cards' capacities. Another way to increase capacity of a computing system is to implement a cluster architecture: to add cluster nodes (workstations) and to increase the network communication speed between the nodes. The advantage of this approach is extensive growth due to which a quite powerful system can be obtained by combining not particularly powerful nodes. Moreover, separate nodes may possess different capacities. This paper considers the use of a clustered computing system for solving problems of structural mechanics with LS-DYNA software. To establish a range of dependencies a mere 2-node cluster has proven sufficient.

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