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Large-eddy simulation of streamwise-rotating turbulent channel flow

机译:流向旋转湍流通道的大涡模拟

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摘要

In many engineering and industrial applications the investigation of rotating turbulent flow is of great interest. Whereas some research has been done concerning channel flows with a spanwise rotation axis, only few investigations have been performed on channel flows with a rotation about the streamwise axis. In the present study an LES of a turbulent streamwise-rotating channel flow at Re{sub}τ = 180 is performed using a moving grid method. The three-dimensional structures and the details of the secondary flow distribution are analyzed and compared with experimental data. The numerical-experimental comparison shows a convincing agreement as to the overall flow features. The results confirm the development of a secondary flow in the spanwise direction, which has been found to be correlated to the rotational speed. Furthermore, the findings show the distortion of the main flow velocity profile, the slight decrease of the stream-wise Reynolds stresses in the vicinity of the walls, and the pronounced increase of the spanwise Reynolds stresses at higher rotation rates near the walls and particularly in the symmetry region. As to the numerical set-up it is shown that periodic boundary conditions in the spanwise direction suffice if the spanwise extent of the computational domain is larger than 10 times the channel half width.
机译:在许多工程和工业应用中,对旋转湍流的研究非常感兴趣。尽管已经对跨度旋转轴的通道流进行了一些研究,但对沿流轴旋转的通道流只进行了很少的研究。在本研究中,使用移动网格方法执行Re {sub}τ= 180时湍流向旋转通道流动的LES。分析了二次流动分布的三维结构和细节,并与实验数据进行了比较。数值实验比较显示出令人信服的整体流动特性。结果证实了沿翼展方向的二次流的发展,已经发现该二次流与旋转速度相关。此外,研究结果还表明,主流速度曲线发生了畸变,壁附近的流向雷诺应力略有减小,并且在壁附近,特别是在较高的转速下,翼展方向的雷诺应力明显增加。对称区域。关于数值设置,表明如果计算域的翼展方向范围大于通道半宽度的10倍,则翼展方向上的周期性边界条件就足够了。

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