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Wind selectivity and partial compensation for wind drift among nocturnally migrating passerines

机译:夜间迁移的雀形目之间的风选择性和风偏补偿

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摘要

A migrating bird’s response to wind can impact its timing, energy expenditure, and path taken. The extent to which nocturnal migrants select departure nights based on wind (wind selectivity) and compensate for wind drift remains unclear. In this paper, we determine the effect of wind selectivity and partial drift compensation on the probability of successfully arriving at a destination area and on overall migration speed. To do so, we developed an individual-based model (IBM) to simulate full drift and partial compensation migration of juvenile Willow Warblers (Phylloscopus trochilus) along the southwesterly (SW) European migration corridor to the Iberian coast. Various degrees of wind selectivity were tested according to how large a drift angle and transport cost (mechanical energy per unit distance) individuals were willing to tolerate on departure after dusk. In order to assess model results, we used radar measurements of nocturnal migration to estimate the wind selectivity and proportional drift among passerines flying in SW directions. Migration speeds in the IBM were highest for partial compensation populations tolerating at least 25% extra transport cost compared to windless conditions, which allowed more frequent departure opportunities. Drift tolerance affected migration speeds only weakly, whereas arrival probabilities were highest with drift tolerances below 20°. The radar measurements were indicative of low drift tolerance, 25% extra transport cost tolerance and partial compensation. We conclude that along migration corridors with generally nonsupportive winds, juvenile passerines should not strictly select supportive winds but partially compensate for drift to increase their chances for timely and accurate arrival.
机译:迁徙的鸟类对风的反应会影响其时间,能源消耗和走的路径。夜间移民基于风(风选择性)选择出发夜并补偿风漂移的程度仍不清楚。在本文中,我们确定风的选择性和部分漂移补偿对成功到达目的地区域的概率以及总体迁移速度的影响。为此,我们开发了一个基于个体的模型(IBM),以模拟幼柳柳莺(Phylloscopus trochilus)沿着西南(SW)欧洲移民走廊向伊比利亚海岸的完全漂移和部分补偿性迁移。根据个体在黄昏后离开时愿意承受的漂移角和运输成本(单位距离的机械能)的大小,测试了不同程度的风选择性。为了评估模型结果,我们使用了夜间迁移的雷达测量来估计风的选择性和在西南方向飞行的pass鸟之间的比例漂移。与无风的情况相比,IBM的迁移速度最高,部分补偿人群可以忍受至少25%的额外运输成本,从而有更多的离港机会。漂移容限对迁移速度的影响很小,而到达概率在20°以下时才最高。雷达测量结果表明漂移容忍度低,额外的运输成本容忍度为25%和部分补偿。我们得出的结论是,在通常没有辅助风的迁徙走廊上,少年雀形目鸟不应严格选择辅助风,而应部分补偿漂移以增加其及时准确到达的机会。

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