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首页> 外文期刊>Journal of the Royal Society Interface >Wing tucks are a response to atmospheric turbulence in the soaring flight of the steppe eagle Aquilo nipalensis
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Wing tucks are a response to atmospheric turbulence in the soaring flight of the steppe eagle Aquilo nipalensis

机译:翼tu是草原鹰Aquilo nipalensis飞翔时对大气湍流的反应

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摘要

Turbulent atmospheric conditions represent a challenge to stable flight in soaring birds, which are often seen to drop their wings in a transient motion that we call a tuck. Here, we investigate the mechanics, occurrence and causation of wing tucking in a captive steppe eagle Aquila nipalensis, using ground-based video and onboard inertial instrumentation. Statistical analysis of 2594 tucks, identified automatically from 45 flights, reveals that wing tucks occur more frequently under conditions of higher atmospheric turbulence. Furthermore, wing tucks are usually preceded by transient increases in airspeed, load factor and pitch rate, consistent with the bird encountering a headwind gust. The tuck itself immediately follows a rapid drop in angle of attack, caused by a downdraft or nose-down pitch motion, which produces a rapid drop in load factor. Positive aerodynamic loading acts to elevate the wings, and the resulting aerodynamic moment must therefore be balanced in soaring by an opposing musculoskeletal moment. Wing tucking presumably occurs when the reduction in the aerodynamic moment caused by a drop in load factor is not met by an equivalent reduction in the apphed musculoskeletal moment. We conclude that wing tucks represent a gust response precipitated by a transient drop in aerodynamic loading.
机译:湍流的大气条件对高飞的鸟类稳定飞行提出了挑战,通常可以看到它们以一种称为“ motion”的瞬态运动使翅膀掉落。在这里,我们使用地面视频和机载惯性仪器,研究了圈养草原鹰天鹰座(Aquila nipalensis)的机翼折皱的力学,发生和成因。对从45个飞行中自动识别出的2594个tu的统计分析表明,在较高的湍流条件下,机翼tu的发生频率更高。此外,机翼通常在空速,负荷系数和俯仰率瞬时增加之前,这与鸟类遇到逆风阵风相一致。由于向下气流或机头向下俯仰运动引起的攻角迅速下降,从而使负载本身迅速下降。正的空气动力学载荷会抬高机翼,因此,在产生的空气动力学力矩时,必须通过相对的肌肉骨骼力矩来平衡腾飞。当由载荷系数下降引起的空气动力力矩的减小不能通过等效的肌肉骨骼力矩的减小而得到满足时,可能会发生机翼褶皱。我们得出的结论是,翼tu代表了由气动载荷的瞬时下降引起的阵风反应。

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