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Into rude air: hummingbird flight performance in variable aerial environments

机译:进入粗鲁的空气:可变空中环境中的蜂鸟飞行性能

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摘要

Hummingbirds are well known for their ability to sustain hovering flight, but many other remarkable features of manoeuvrability characterize the more than 330 species of trochilid. Most research on hummingbird flight has been focused on either forward flight or hovering in otherwise non-perturbed air. In nature, however, hummingbirds fly through and must compensate for substantial environmental perturbation, including heavy rain, unpredictable updraughts and turbulent eddies. Here, we review recent studies on hummingbirds flying within challenging aerial environments, and discuss both the direct and indirect effects of unsteady environmental flows such as rain and von Kármán vortex streets. Both perturbation intensity and the spatio-temporal scale of disturbance (expressed with respect to characteristic body size) will influence mechanical responses of volant taxa. Most features of hummingbird manoeuvrability remain undescribed, as do evolutionary patterns of flight-related adaptation within the lineage. Trochilid flight performance under natural conditions far exceeds that of microair vehicles at similar scales, and the group as a whole presents many research opportunities for understanding aerial manoeuvrability.This article is part of the themed issue ‘Moving in a moving medium: new perspectives on flight’.
机译:蜂鸟以维持盘旋飞行的能力而闻名,但是机动性的许多其他显着特征是trochilid的330多种物种的特征。蜂鸟飞行的大多数研究都集中在向前飞行或在其他不受干扰的空中盘旋。但是,在自然界中,蜂鸟会飞过,并且必须补偿大范围的环境干扰,包括大雨,不可预测的上风和涡流。在这里,我们回顾了有关在具有挑战性的空中环境中飞行的蜂鸟的最新研究,并讨论了不稳定的环境流动(如雨水和vonKármán涡街)的直接和间接影响。扰动强度和扰动的时空尺度(相对于特征体大小表示)都将影响无性类群的机械响应。蜂鸟可操纵性的大多数特征仍未得到描述,沿袭中与飞行有关的适应的进化模式也没有描述。 Trochilid在自然条件下的飞行性能远远超过类似规模的微型飞行器,整个研究组为理解空中机动性提供了许多研究机会。本文是“在移动介质中移动:飞行的新视角”主题主题的一部分'。

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