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Direct numerical simulation of turbulent flow in a spanwise rotating square duct at high rotation numbers

机译:高旋转数下翼展方向旋转方管内湍流的直接数值模拟

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In this paper, direct numerical simulations have been performed to study the effects of Coriolis force on the turbulent flow field confined within a square duct subjected to spanwise system rotations at high rotation numbers. In response to the system rotation, secondary flows appear as large streamwise counter rotating vortices, which interact intensely with the four boundary layers and have a significant impact on flow statistics, velocity spectra and coherent structures. It is observed that at sufficiently high rotation numbers, a Taylor-Proudman region appears and complete laminarization is almost reached near the top and side walls. The influence of large organized secondary flows on the production rate and redistribution of turbulent kinetic energy has been investigated through a spectral analysis. It is observed that the Coriolis force dominates the transport of Reynolds stresses and turbulent kinetic energy, and forces the spectra of streamwise and vertical velocities to synchronize within a wide range of scales. (C) 2016 Elsevier Inc All rights reserved.
机译:在本文中,已经进行了直接数值模拟,以研究科里奥利力对在高转数下受到展展方向系统旋转的方管内湍流场的影响。响应于系统旋转,二次流表现为大的逆流涡流,它们与四个边界层强烈相互作用,并对流统计,速度谱和相干结构产生重大影响。可以看出,在足够高的转数下,出现了泰勒-普鲁德曼(Taylor-Proudman)区域,并且在顶壁和侧壁附近几乎完全达到层状化。通过光谱分析研究了大的有组织的二次流对生产率和湍动能重新分配的影响。可以看出,科里奥利力主导着雷诺应力和湍动能的传递,并迫使流向和垂直速度的谱在很大范围内同步。 (C)2016 Elsevier Inc保留所有权利。

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