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Simulations of turbulent duct flow with lattice Boltzmann method on GPU cluster

机译:用GPU簇用晶格Boltzmann方法模拟湍流管道流量

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摘要

Lattice Boltzmann models are used to simulate three-dimensional pressure driven laminar and turbulent duct flows using graphics processing units. The performances of the D3Q15, D3Q19 and D3Q27 models are first validated by comparisons with laminar analytical and benchmark solutions; the D3Q27 model is shown to produce the most accurate results. Turbulent duct flows at Re-tau = 360 and 600 are further simulated by the D3Q27 model, and the predicted results compare favorably with the existing Navier-Stokes equation based benchmark solutions. For multi-GPU computations, the performance of 2-D domain decomposition is superior to that of 1-D domain decomposition where the performance saturates at a lower GPU count. For the present parallel performance evaluation, 1730 and 2464 MLUPS are achieved with 12 GTX Titan and 48 Tesla M2070 GPUs from nVIDIA, respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用图形处理单元,使用格子Boltzmann模型来模拟三维压力驱动的层流和湍流管道。 通过与层析分析和基准解决方案的比较,首先验证D3Q15,D3Q19和D3Q27模型的性能; D3Q27模型显示为产生最准确的结果。 Re-Tau = 360和600的湍流管道流通过D3Q27模型进一步模拟,并且预测结果与现有的基于Navier-Stokes方程的基准解决方案相比,有利地比较。 对于多GPU计算,2-D域分解的性能优于1-D域分解的性能,其中性能在较低的GPU计数下饱和。 对于目前的并行性能评估,分别使用来自NVIDIA的12 GTX钛和48个Tesla M2070GPU来实现1730和2464mLUP。 (c)2018年elestvier有限公司保留所有权利。

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