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Three-dimensional vortex wake structure of flapping wings in hovering flight

机译:盘旋飞行中扑翼的三维涡流尾迹结构

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摘要

Flapping wings continuously create and send vortices into their wake, while imparting downward momentum into the surrounding fluid. However, experimental studies concerning the details of the three-dimensional vorticity distribution and evolution in the far wake are limited. In this study, the three-dimensional vortex wake structure in both the near and far field of a dynamically scaled flapping wing was investigated experimentally, using volumetric three-component velocimetry. A single wing, with shape and kinematics similar to those of a fruitfly, was examined. The overall result of the wing action is to create an integrated vortex structure consisting of a tip vortex (TV), trailing-edge shear layer (TESL) and leading-edge vortex. The TESL rolls up into a root vortex (RV) as it is shed from the wing, and together with the TV, contracts radially and stretches tangentially in the downstream wake. The downwash is distributed in an arc-shaped region enclosed by the stretched tangential vorticity of the TVs and the RVs. A closed vortex ring structure is not observed in the current study owing to the lack of well-established starting and stopping vortex structures that smoothly connect the TV and RV. An evaluation of the vorticity transport equation shows that both the TV and the RV undergo vortex stretching while convecting downwards: a three-dimensional phenomenon in rotating flows. It also confirms that convection and secondary tilting and stretching effects dominate the evolution of vorticity.
机译:拍打的翅膀不断地产生漩涡,并将漩涡送入尾流,同时将向下的动量传递到周围的流体中。但是,关于远场三维涡度分布和演化细节的实验研究是有限的。在这项研究中,使用体积三分量测速技术,对动态缩放的襟翼的近场和远场中的三维涡流尾迹进行了实验研究。检查了单翼,其形状和运动学与果蝇相似。机翼动作的整体结果是创建一个由尖端涡流(TV),后缘剪切层(TESL)和前沿涡流组成的集成涡流结构。当TESL从机翼上脱落时,它卷成根涡(RV),并与TV一起径向收缩并在下游尾流中切向拉伸。向下冲洗分布在由电视和RV的拉伸切向涡度包围的弧形区域中。由于缺乏将TV和RV顺利连接的良好建立的起止旋涡结构,因此在当前研究中未观察到闭合的旋涡环结构。对涡旋输运方程的评估表明,TV和RV都在向下对流的同时经历了涡旋拉伸:旋转流中的三维现象。这也证实了对流以及二次倾斜和伸展作用主导了涡度的演变。

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