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Estimation of Unsteady Aerodynamics in the Wake of a Freely Flying European Starling (Sturnus vulgaris)

机译:自由飞翔的欧洲Star鸟(Sturnus vulgaris)醒来后的不稳定空气动力学估计

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摘要

Wing flapping is one of the most widespread propulsion methods found in nature; however, the current understanding of the aerodynamics in bird wakes is incomplete. The role of the unsteady motion in the flow and its contribution to the aerodynamics is still an open question. In the current study, the wake of a freely flying European starling has been investigated using long-duration high-speed Particle Image Velocimetry (PIV) in the near wake. Kinematic analysis of the wings and body of the bird has been performed using additional high-speed cameras that recorded the bird movement simultaneously with the PIV measurements. The wake evolution of four complete wingbeats has been characterized through reconstruction of the time-resolved data, and the aerodynamics in the wake have been analyzed in terms of the streamwise forces acting on the bird. The profile drag from classical aerodynamics was found to be positive during most of the wingbeat cycle, yet kinematic images show that the bird does not decelerate. It is shown that unsteady aerodynamics are necessary to satisfy the drag/thrust balance by approximating the unsteady drag term. These findings may shed light on the flight efficiency of birds by providing a partial answer to how they minimize drag during flapping flight.
机译:机翼拍打是自然界中最广泛使用的推进方法之一。但是,目前对鸟尾流中空气动力学的理解还不完善。非恒定运动在气流中的作用及其对空气动力学的贡献仍然是一个悬而未决的问题。在当前的研究中,已经使用近距离尾迹中的长时间高速粒子图像测速技术(PIV)研究了自由flying翔的欧洲八哥的尾迹。使用附加的高速摄像机对鸟类的翅膀和身体进行了运动学分析,该摄像机同时记录了鸟类的活动和PIV测量值。通过重建时间分辨数据来表征四个完整机翼节拍的尾流演变,并根据作用在禽类上的水流力来分析尾流中的空气动力学。人们发现,在大多数机翼节拍周期中,来自经典空气动力学的轮廓阻力为正,但运动学图像显示该鸟并没有减速。结果表明,非稳态空气动力学是通过近似非稳态阻力项来满足阻力/推力平衡所必需的。这些发现可以通过部分回答家禽在拍打过程中如何减小阻力来阐明家禽的飞行效率。

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