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An OpenCL-based parallel CFD code for simulations on hybrid systems with massively-parallel accelerators

机译:基于Opencl的并行CFD代码,用于模拟具有大型平行加速器的混合系统

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A parallel finite-volume CFD algorithm for modeling of incompressible flows on hybrid supercomputers is presented. It is based on a symmetry-preserving high-order numerical scheme for structured meshes. A multilevel approach that combines different parallel models is used for large-scale simulations on computing systems with massively-parallel accelerators. MPI is used on the first level within the distributed memory model to couple computing nodes of a supercomputer. On the second level OpenMP is used to engage multiple CPU cores of a computing node. The third level exploits the computing potential of massively-parallel accelerators such as GPU (Graphics Processing Units) of AMD and NVIDIA, or Intel Xeon Phi accelerators of the MIC (Many Integrated Core) architecture. The hardware independent OpenCL standard is used to compute on accelerators of different architectures within a general model for a combination of a central processor and a math co-processor.
机译:提出了一种平行的有限体积CFD算法,用于在混合超级计算机上建模的不可压缩流动。它基于用于结构网格的对称保留的高阶数值方案。将不同并行模型结合的多级方法用于具有大规模平行加速器的计算系统上的大规模模拟。 MPI用于分布式存储器模型内的第一级别,以耦合超级计算机的计算节点。在第二级OpenMP用于接合计算节点的多个CPU内核。第三级利用了大规模平行加速器的计算潜力,例如AMD和NVIDIA的GPU(图形处理单元),或MIC(许多集成核心)架构的英特尔Xeon Phi加速器。硬件独立的OpenCL标准用于计算中央处理器和数学协处理器的组合的一般模型中的不同架构的加速器。

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