涡流
唤醒
物理
拍打
机械
涡流环
马蹄涡
起动涡流
卡尔曼漩涡街
经典力学
航空航天工程
尾流紊流
翼
湍流
雷诺数
工程类
热力学
作者
Weijie Mo,Guanghua He,Hassan Ghassemi,Hao Yang,Weihao Mao
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2023-01-11
卷期号:35 (2)
被引量:12
摘要
Numerical simulations are used to investigate wake vortex structures with different aspect ratios (ARs) of flapping hydrofoil on power extraction. Simulations employ a finite-volume method with an overset grid technique allowing relatively large heaving and pitching motions of the flapping hydrofoil. In a two-dimensional case, the wake is dominated by a Karman-like vortex street composed of spanwise vortices. In contrast, the wake in a three-dimensional condition is dominated by two sets of vortex structures that are oblique to the streamwise, which is significantly different from the two-dimensional condition. The two sets of vortex structures interact with each other as they convect downstream. For a large AR flapping hydrofoil, the two sets of vortex loops stay intertwined with each other. The vortex loops evolve into vortex rings for small AR. In addition, the leading edge vortex on the foil surface is compressed by the tip vortices, affecting the synchronization of vertical force and foil motion. This effect of compression is weakened as the AR increases. The power-extraction efficiency reaches an optimal value of 32.4% at AR = 8 in a three-dimensional condition.
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