Journal of Turbomachinery · 2010 · 151 citations · 18 references
Flow ControlEngineeringFluid MechanicsNavier-stokes EquationsComputational MechanicsSupercomputer ArchitectureNode Gpu ClusterGpu ComputingUnsteady FlowCompressible FlowNumerical SimulationSystems EngineeringParallel ComputingComplete HubComputer EngineeringComputational Fluid DynamicsDenton CodesGpu ClusterFluid MachineryHydrodynamicsAccelerated 3DParallel Programming
A new three-dimensional Navier–Stokes solver for flows in turbomachines has been developed. The new solver is based on the latest version of the Denton codes but has been implemented to run on graphics processing units (GPUs) instead of the traditional central processing unit. The change in processor enables an order-of-magnitude reduction in run-time due to the higher performance of the GPU. The scaling results for a 16 node GPU cluster are also presented, showing almost linear scaling for typical turbomachinery cases. For validation purposes, a test case consisting of a three-stage turbine with complete hub and casing leakage paths is described. Good agreement is obtained with previously published experimental results. The simulation runs in less than 10 min on a cluster with four GPUs.
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Shekhar Borkar · Proceedings - ACM IEEE Design Automation Conference · 2007 · 951 citations
Hardware Security, Cluster Computing, Manycore Processor +15
Stencil computation optimization and auto-tuning on state-of-the-art multicore architectures
Kaushik Datta, Mark Murphy, В. М. Волков et al. · IEEE International Conference on High Performance Computing, Data, and Analytics · 2008 · 464 citations
Cluster Computing, Computational Science, Massively-parallel Computing +15