Nussbaumer Raphaël, Schmid Baptiste, Bauer Silke, Liechti Felix
Cornell Lab of Ornithology Cornell University Ithaca New York USA.
Swiss Ornithological Institute Sempach Switzerland.
Ecol Evol. 2022 Jul 31;12(8):e9146. doi: 10.1002/ece3.9146. eCollection 2022 Aug.
Wind has a significant yet complex effect on bird migration speed. With prevailing south wind, overall migration is generally faster in spring than in autumn. However, studies on the difference in airspeed between seasons have shown contrasting results so far, in part due to their limited geographical or temporal coverage. Using the first full-year weather radar data set of nocturnal bird migration across western Europe together with wind speed from reanalysis data, we investigate variation of airspeed across season. We additionally expand our analysis of ground speed, airspeed, wind speed, and wind profit variation across time (seasonal and daily) and space (geographical and altitudinal). Our result confirms that wind plays a major role in explaining both temporal and spatial variabilities in ground speed. The resulting airspeed remains relatively constant at all scales (daily, seasonal, geographically and altitudinally). We found that spring airspeed is overall 5% faster in Spring than autumn, but we argue that this number is not significant compared to the biases and limitation of weather radar data. The results of the analysis can be used to further investigate birds' migratory strategies across space and time, as well as their energy use.
风对鸟类迁徙速度有着重大而复杂的影响。在盛行南风的情况下,春季的总体迁徙速度通常比秋季快。然而,迄今为止,关于不同季节空速差异的研究结果却相互矛盾,部分原因在于其地理或时间覆盖范围有限。利用西欧夜间鸟类迁徙的首个全年天气雷达数据集以及再分析数据中的风速,我们研究了空速随季节的变化。我们还进一步扩展了对地面速度、空速、风速以及风的助力随时间(季节和每日)和空间(地理和海拔)变化的分析。我们的结果证实,风在解释地面速度的时间和空间变异性方面起着主要作用。在所有尺度(每日、季节、地理和海拔)上,所得出的空速相对保持恒定。我们发现春季的空速总体上比秋季快5%,但我们认为,与天气雷达数据的偏差和局限性相比,这个数字并不显著。分析结果可用于进一步研究鸟类在空间和时间上的迁徙策略及其能量利用情况。