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Choice of a turbulence model for pump intakes

机译:泵进气口湍流模型的选择

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This article is focused on the choice of a suitable turbulence model for simulations of an industrial pump's intake, from the perspective of accuracy and, partially, also the CPU time. Twelve steady-state and transient simulations were made on a fine computational mesh, using turbulence models such as: the shear stress transport (SST), the scale-adaptive simulation (SAS), the Reynolds stress model, the explicit algebraic Reynolds-stress model, the detached eddy simulation and the large eddy simulation (LES). The curvature-correction (CC) option was assessed for the SST and SAS turbulence models. The results were compared with the LES and with published experimental results. Although all the models could predict the main floor vortex, there were still some substantial differences. It can be able to conclude that it is better to use either the SST-CC turbulence model, due to its low-computational resources and far better results than the SST model, or the SAS-CC turbulence model, since its predictions are quite similar to the LES results. In the final step, good agreement with experimental results was shown for a longer simulation with the SAS-CC turbulence model.
机译:本文从精度以及部分CPU时间的角度着眼于选择合适的湍流模型来模拟工业泵的进气口。使用湍流模型在精细的计算网格上进行了十二个稳态和瞬态仿真,这些模型包括:切应力传递(SST),尺度自适应仿真(SAS),雷诺应力模型,显式代数雷诺应力模型,独立涡流仿真和大涡流仿真(LES)。对SST和SAS湍流模型评估了曲率校正(CC)选项。将结果与LES和已发表的实验结果进行了比较。尽管所有模型都可以预测主底涡,但仍存在一些实质性差异。可以得出的结论是,由于SST-CC湍流模型的计算资源低且比SST模型或SAS-CC湍流模型的结果好得多,因此它的计算资源少,因为它的预测非常相似,因此更好LES结果。在最后一步中,对于使用SAS-CC湍流模型进行更长的仿真,结果表明与实验结果吻合良好。

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    《Journal of Power and Energy》 |2011年第6期|p.764-778|共15页
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