在Re=10000时斜延球后尾迹的LES数值研究

Hongyu Zhou, Hao Liu, Zhiguo Zhang, Xianzhou Wang, D. Feng
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摘要

通过一个长球体的粘性流动总是复杂的,往往是三维的,因此吸引了流体动力学和空气动力学的科学家。本文的目的是利用大涡模拟(LESs)研究在45度攻角下6:1长球体后的不对称尾迹。在雷诺数为10000、自由流速度为U0、小轴径为d的条件下进行了LES模拟,并与前人在不同雷诺数条件下的LES模拟结果进行了比较。模拟结果表明,近尾迹场中存在一对反向旋转涡,该涡是由一对从长形球体两侧分离出来的涡片发展而来的。由于长形球体尖端的涡流脱落和能量耗散的影响,导致涡流管破裂和相干性丧失。从速度、涡度、压力和侧力等物理量可以明显观察到这种不对称性。结果表明,涡旋结构存在明显的倾斜,其方向是随机的,可以用干草叉理论来解释。通过对近场和远场的比较,揭示了流动特性的发展和特点。不对称尾流对水下航行器的性能和潜艇的机动性有很大的影响,应引起人们的重视。
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Numerical Study of the Wake Behind an Inclined Prolate Spheroid at Re=10000 Using LES
The viscous flow past a prolate spheroid is always complicated and often three-dimensional, thereby fascinating scientists in fluid dynamics and aerodynamics. The objective of this paper is to investigate the asymmetric wake behind a 6:1 prolate spheroid at 45-deg angle of attack by means of Large-Eddy simulations(LESs). The LES was performed at a Reynolds number of 10000, based on the free stream velocity U0 and minor axis diameter D. Results in the paper were compared with the previous LES results for different Re. The simulation revealed that there was a pair of counter-rotating vortex in the near wake field, which developed from a pair of vortex sheet separating from the sides of prolate spheroid. The vortex broke and the coherence of vortex tube lost because of the influence of vortex shedding from the tip of the prolate spheroid and energy dissipation. The asymmetry could be observed evidently from several physical quantities, such as velocity, vorticity, pressure and side force. The results showed an obvious skew of vortex structure, the direction of which was random and could be explained by pitchfork theory. The comparison between near field and far field was present to show the development and features of the flow characteristics. The asymmetric wake should be given more attention as it may be detrimental to underwater vehicle performance and submarine maneuverability.
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