首页> 外文期刊>The Journal of Experimental Biology >Gliding for a free lunch: biomechanics of foraging flight in common swifts (Apus apus)
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Gliding for a free lunch: biomechanics of foraging flight in common swifts (Apus apus)

机译:滑动免费午餐:常见的Swifts觅食飞行的生物力学(APUS APU)

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摘要

Although the biomechanics of animal flight have been well studied in laboratory apparatus such as wind tunnels for many years, the applicability of these data to natural flight behaviour has been examined in few instances and mostly in the context of long-distance migration. Here, we used rotational stereo-videography to record the free-flight trajectories of foraging common swifts. We found that, despite their exquisite manoeuvring capabilities, the swifts only rarely performed high-acceleration turns. More surprisingly, we also found that despite feeding on tiny insects probably moving with ambient flow, the birds adjust their air speed to optimize cost of transport over distance. Finally, swifts spent only 25% of their time flapping; the majority of their time (71%) was spent in extended wing gliding, during which the average power expended for changes in speed or elevation was 0.84 W kg(-1) and not significantly different from 0. Thus, gliding swifts extracted sufficient environmental energy to pay the cost of flight during foraging.
机译:虽然在诸如风隧道等实验室设备的动物飞行中的生物力学已经很多年进行了很多年,但在很少的情况下,这些数据的适用性已经在很少的情况下检查了自然飞行行为,并且主要是在长途迁移的背景下。在这里,我们使用了旋转立体声摄像机来记录觅食普通迅速的自由飞行轨迹。我们发现,尽管它们精致的机动能力,但Swifts仅很少执行高速度转弯。更令人惊讶的是,我们还发现,尽管在微小的昆虫上喂养可能与环境流动移动,但鸟类调整空气速度以优化运输成本。最后,Swifts只花了25%的时间拍打;他们的大部分时间(71%)在延长的翼滑动中花了,在此期间,速度或升高变化的平均功率为0.84W千克(-1),而且与0没有显着不同。因此,滑动迅速提取了足够的环境能源支付在觅食期间的飞行成本。

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