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Parallel three-dimensional numerical simulation of rotating detonation engine on graphics processing units

机译:图形处理单元上旋转爆轰发动机的三维三维并行仿真

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Rotating detonation engine is a new concept engine driven by detonation combustion for aerospace vehicles. In this paper, three-dimensional numerical simulation was used to investigate the combustion process and kinetic properties of reactive flow within the combustion chamber. To utilize fine grid in simulation, it requires a significant amount of CPU Time to depict this combustion. With the help of NVIDIA's CUDA, the computation was discretized and distributed to multiple graphics processing units, making the computation time reasonable and tolerable. The present study showed both the way to map our model into CUDA programming and the performance of acceleration, explicating the details of CUDA programming for different types of data. The result verified that CUDA was an efficient method for detonation simulation. (C) 2014 Elsevier Ltd. All rights reserved.
机译:旋转爆震发动机是一种新型概念发动机,由航空航天车辆的爆震燃烧驱动。在本文中,三维数值模拟被用来研究燃烧过程和燃烧室内反应流的动力学特性。为了在仿真中利用精细的网格,需要大量的CPU时间来描述这种燃烧。在NVIDIA的CUDA的帮助下,计算被离散化并分配给多个图形处理单元,从而使计算时间合理且可忍受。本研究既展示了将模型映射到CUDA编程中的方式,又展示了加速的性能,并阐明了针对不同类型数据的CUDA编程的详细信息。结果证明,CUDA是一种有效的爆轰模拟方法。 (C)2014 Elsevier Ltd.保留所有权利。

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