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The influence of weather on the flight altitude of nocturnal migrants in mid-latitudes

机译:天气对中纬度夜间移民的飞行高度的影响

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By altering its flight altitude, a bird can change the atmospheric conditions it experiences during migration. Although many factors may influence a bird's choice of altitude, wind is generally accepted as being the most influential. However, the influence of wind is not clearly understood, particularly outside the trade-wind zone, and other factors may play a role. We used operational weather radar to measure the flight altitudes of nocturnally migrating birds during spring and autumn in the Netherlands. We first assessed whether the nocturnal altitudinal distribution of proportional bird density could be explained by the vertical distribution of wind support using three different methods. We then used generalized additive models to assess which atmospheric variables, in addition to altitude, best explained variability in proportional bird density per altitudinal layer each night. Migrants generally remained at low altitudes, and flight altitude explained 52 and 73% of the observed variability in proportional bird density in spring and autumn, respectively. Overall, there were weak correlations between altitudinal distributions of wind support and proportional bird density. Improving tailwind support with height increased the probability of birds climbing to higher altitude, but when birds did fly higher than normal, they generally concentrated around the lowest altitude with acceptable wind conditions. The generalized additive model analysis also indicated an influence of temperature on flight altitudes, suggesting that birds avoided colder layers. These findings suggested that birds increased flight altitudes to seek out more supportive winds when wind conditions near the surface were prohibitive. Thus, birds did not select flight altitudes only to optimize wind support. Rather, they preferred to fly at low altitudes unless wind conditions there were unsupportive of migration. Overall, flight altitudes of birds in relation to environmental conditions appear to reflect a balance between different adaptive pressures.
机译:通过改变飞行高度,鸟类可以改变其在迁徙过程中所经历的大气条件。尽管许多因素可能会影响鸟类的海拔高度选择,但通常认为风是最有影响力的。但是,人们尚不清楚风的影响,尤其是在顺风区域之外,其他因素可能会起作用。我们在荷兰的春季和秋季使用可操作的天气雷达来测量夜间迁徙鸟类的飞行高度。我们首先评估了比例鸟类密度的夜间海拔高度分布是否可以通过使用三种不同方法的风向垂直分布来解释。然后,我们使用广义的加性模型来评估除了海拔高度以外,哪些大气变量能够最好地解释每个夜间每个垂直层的成比例鸟类密度的变异性。迁徙者通常停留在低海拔,而飞行高度分别解释了春季和秋季分别观察到的成比例鸟类密度变化的52%和73%。总体而言,风向的高度分布与成比例的鸟类密度之间的相关性较弱。随着高度的增加,顺风支撑的增加会增加鸟类爬升至更高高度的可能性,但是当鸟类确实飞得比平常高时,它们通常会在可接受的风况下集中在最低高度附近。广义加性模型分析还表明温度对飞行高度的影响,表明鸟类避免了较冷的层。这些发现表明,当水面附近的风势不利时,鸟类会增加飞行高度以寻找更多的支持风。因此,鸟类不会仅选择飞行高度来优化风的支持。相反,他们宁愿在低海拔飞行,除非那里的风况不支持迁徙。总体而言,与环境条件相关的鸟类飞行高度似乎反映了不同适应压力之间的平衡。

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