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An adaptable parallel algorithm for the direct numerical simulation of incompressible turbulent flows using a Fourier spectral/hp element method and MPI virtual topologies

机译:使用傅里叶频谱/ hp元素方法和MPI虚拟拓扑对不可压缩湍流进行直接数值模拟的自适应并行算法

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摘要

A hybrid parallelisation technique for distributed memory systems is investigated for a coupled Fourier-spectral/hp element discretisation of domains characterised by geometric homogeneity in one or more directions. The performance of the approach is mathematically modelled in terms of operation count and communication costs for identifying the most efficient parameter choices. The model is calibrated to target a specific hardware platform after which it is shown to accurately predict the performance in the hybrid regime. The method is applied to modelling turbulent flow using the incompressible Navier Stokes equations in an axisymmetric pipe and square channel. The hybrid method extends the practical limitations of the discretisation, allowing greater parallelism and reduced wall times. Performance is shown to continue to scale when both parallelisation strategies are used. (C) 2016 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:为了在一个或多个方向上以几何均匀性为特征的域,进行了耦合傅立叶谱/ hp元素离散化研究,研究了分布式存储系统的混合并行化技术。该方法的性能在操作次数和通信成本方面进行了数学建模,以识别最有效的参数选择。对该模型进行了校准,以针对特定的硬件平台,此后可以准确地预测混合模式下的性能。该方法适用于在轴对称管道和方形通道中使用不可压缩的Navier Stokes方程对湍流进行建模。混合方法扩展了离散化的实际限制,从而允许更大的并行度和更少的壁挂时间。当同时使用两种并行化策略时,性能将继续扩展。 (C)2016作者。由Elsevier B.V.发布。这是CC BY许可下的开放获取文章(http://creativecommons.org/licenses/by/4.0/)。

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