首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >The avian tail reduces body parasite drag by controlling flow separation and vortex shedding.
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The avian tail reduces body parasite drag by controlling flow separation and vortex shedding.

机译:禽尾巴通过控制流动分离和涡旋脱落来减少身体寄生虫的阻力。

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摘要

The aerodynamic effect of the furled avian tail on the parasite drag of a bird's body was investigated on mounted, frozen European starling Sturnus vulgaris in a wind tunnel at flight speeds between 6 and 14 m s(-1). Removal of tail rectrices and dorsal and ventral covert feathers at the base of the tail increased the total parasite drag of the body and tail by between 25 and 55%. Flow visualization and measurements of dynamic pressure in the tail boundary layer showed that in the intact bird a separation bubble forms on the ventral side of the body, and reattaches to the ventral side of the tail. This bubble is a consequence of the morphology of the body, with a rapid contraction posterior to the pelvis and hind legs. The tail and the covert feathers at its base act as a combined splitter plate and wedge to control vortex shedding and body wake development, and thereby are important to minimize drag. This hitherto unsuspected mechanism is central to understanding the morphology of the avian body, and may have had a significant influence on the evolution of avian tail morphology by pre-adapting the tail for radiation and specialization as an aerodynamic lifting structure and as an organ of communication in sexual selection.
机译:在风洞中以6到14 m s(-1)的飞行速度在风洞中安装的冷冻欧洲八哥寻常八哥(Sturnus vulgaris)上研究了皱纹的禽尾对鸟类寄生虫的空气动力学影响。去除尾巴直肠以及尾巴底部的背侧和腹侧隐蔽羽毛,可使身体和尾巴的总寄生虫阻力增加25%至55%。流动可视化和尾部边界层中动压的测量表明,在完整的鸟类中,分离气泡在身体的腹侧形成,并重新附着在尾巴的腹侧。气泡是人体形态的结果,在骨盆和后腿后部迅速收缩。尾巴和隐蔽羽毛在其基部充当分隔板和楔形物的组合,以控制涡流脱落和身体尾气的发展,因此对于最大程度地减小阻力很重要。这种迄今未曾预料到的机制对于了解禽体的形态至关重要,并且可能通过将尾巴预先进行辐射和专门化,使其成为空气动力学的提升结构和交流器官,从而对禽类尾巴形态的演变产生重大影响。在性选择中。

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