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Toward large scale parallel computer simulation of viscoelastic fluid flow: A study of benchmark flow problems

机译:走向粘弹性流体流动的大规模并行计算机模拟:基准流问题的研究

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Followed by our previous study, an OpenFOAM-based viscoelastic flow solver has been further validated through simulation of viscoelastic flow past a cylinder. The drag coefficients calculated by the Oldroyd-B model under the creeping flow in a range of Weissenberg (Wi) number are in good agreements with those reported in the literature. Using the linear Phan-Thien Tanner (L-PTT) model, time-dependent two-dimensional simulations of flow past cylinder have been carried out in a range of Wi number and Reynolds (Re) number, and revealed interesting cooperative effects of inertia and elasticity on the structural evolution of the wake behind the cylinder. The details of parallel computing strategy are analysed and discussed. The codes are evaluated for large scale parallel simulation of two-dimensional and three-dimensional contraction flow as well as two-dimensional flow past a cylinder. The key bottlenecks, which affect the scalability of parallel computing, are discussed. (C) 2014 Elsevier B.V. All rights reserved.
机译:在我们之前的研究之后,通过模拟经过圆柱体的粘弹性流,进一步验证了基于OpenFOAM的粘弹性流求解器。在一定的Weissenberg(Wi)数范围内,在蠕变流动下由Oldroyd-B模型计算出的阻力系数与文献报道的相符。使用线性Phan-Thien Tanner(L-PTT)模型,在Wi数和Reynolds(Re)数的范围内进行了时变二维流经圆柱体的二维模拟,并揭示了惯性和弹性对圆柱体后面尾流的结构演变的影响。分析并讨论了并行计算策略的细节。对代码进行评估,以进行二维和三维收缩流以及通过圆柱体的二维流的大规模并行模拟。讨论了影响并行计算可伸缩性的关键瓶颈。 (C)2014 Elsevier B.V.保留所有权利。

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