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Ecology of tern flight in relation to wind topography and aerodynamic theory

机译:燕鸥飞行的生态学与风地形和空气动力学理论的关系

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摘要

Flight is an economical mode of locomotion, because it is both fast and relatively cheap per unit of distance, enabling birds to migrate long distances and obtain food over large areas. The power required to fly follows a U-shaped function in relation to airspeed, from which context dependent ‘optimal’ flight speeds can be derived. Crosswinds will displace birds away from their intended track unless they make compensatory adjustments of heading and airspeed. We report on flight track measurements in five geometrically similar tern species ranging one magnitude in body mass, from both migration and the breeding season at the island of Öland in the Baltic Sea. When leaving the southern point of Öland, migrating Arctic and common terns made a 60° shift in track direction, probably guided by a distant landmark. Terns adjusted both airspeed and heading in relation to tail and side wind, where coastlines facilitated compensation. Airspeed also depended on ecological context (searching versus not searching for food), and it increased with flock size. Species-specific maximum range speed agreed with predicted speeds from a new aerodynamic theory. Our study shows that the selection of airspeed is a behavioural trait that depended on a complex blend of internal and external factors.This article is part of the themed issue ‘Moving in a moving medium: new perspectives on flight’.
机译:飞行是一种经济的运动方式,因为它在单位距离内既快速又相对便宜,使鸟类能够长途迁移并在大面积上获取食物。飞行所需的功率遵循与空速有关的U形函数,从中可以得出上下文相关的“最佳”飞行速度。除非对风向和空速进行补偿性调整,否则侧风会使家禽离开预期的航迹。我们报告了在波罗的海厄兰岛的迁徙和繁殖季节,五种几何上相似的燕鸥物种的飞行轨迹测量值,这些物种的体重在一个量级。当离开厄兰岛的南端时,迁徙的北极燕鸥和普通燕鸥在航迹方向上发生了60°的偏移,这可能是由遥远的地标引导的。燕鸥调节了相对于尾风和侧风的空速和航向,海岸线有助于补偿。空速还取决于生态环境(搜索与不搜索食物),并且随着鸡群的大小而增加。特定于物种的最大射程速度与新的空气动力学理论所预测的速度一致。我们的研究表明,空速的选择是一种行为特征,取决于内部和外部因素的复杂结合。本文是“在移动的介质中移动:飞行的新视角”主题问题的一部分。

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