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首页> 外文期刊>International journal of computational fluid dynamics >Secondary flow and roll cells interaction in high-aspect-ratio rotating turbulent duct flows
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Secondary flow and roll cells interaction in high-aspect-ratio rotating turbulent duct flows

机译:高纵横比旋转湍流导管流中的二次流和滚动单元相互作用

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摘要

End-wall effects for high aspect ratio (AR) turbulent duct flows under moderate spanwise rotation are investigated using Reynolds-Averaged Navier-Stokes (RANS) calculations with a Reynolds stress turbulence closure model. It is shown that despite an important uniformisation of the mean streamwise flow compared to the non-rotating case, the channel flow solution (AR=) is not recovered in practical high AR ducts used in experiments. The unavoidable end-wall generated secondary flow causes transverse advection which is capable of altering the mean velocity profile, even for AR as high as 22. In addition, for Re=40,000 and Ro=0.22, persistent longitudinal roll cells are found in the RANS solutions. The results suggest that their interaction with the secondary flow may challenge the prospect of formally reaching a steady, streamwise invariant regime in actual rotating duct experiments.
机译:使用Reynolds应力湍流闭合模型,使用Reynolds平均Navier-Stokes(RANS)计算研究了在中等翼展方向旋转下高纵横比(AR)湍流导管流动的端壁效应。结果表明,尽管与非旋转情况相比,平均水流具有重要的均一性,但在实验中使用的实际高AR管道中,通道流解(AR =)并未得到恢复。不可避免的端壁产生的二次流会引起横向对流,即使对于高达22的AR,它也能够改变平均速度曲线。此外,对于Re = 40,000和Ro = 0.22,在RANS中发现了持久的纵向滚动单元解决方案。结果表明,它们与二次流的相互作用可能会挑战在实际的旋转管道实验中正式达到稳定的,沿流向不变状态的前景。

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