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Microclimate of tree cavities during winter nights—implications for roost site selection in birds

机译:冬季夜晚树木空洞的小气候-对鸟类栖息地的选择产生了影响

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摘要

We examined the relationships between cavity temperature, ambient temperature outside the cavity and structural characteristics of 70 cavities measured for 1 night to determine if cavity roosting birds may potentially select warmer tree cavities for wintertime roosting. The mean temperature increment of the cavity (=cavity-ambient temperature) varied from −2.4 to 4.9°C and increased with higher day-to-night fluctuations in the ambient temperature, smaller cavity entrance and better health status of the cavity tree. Cavities in healthy trees were warmer than those in dead trees, but this difference disappeared with rising mean ambient temperatures. This interaction between the effects of tree health status and mean ambient temperature, as well as the effect of day-to-night fluctuations in the ambient temperature, were supported by the analysis of repeated measurements of temperature taken on 12 consecutive nights in five cavities. The variability in cavity microclimates makes the selection of warmer roost sites possible, and the predictors of microclimate may provide indirect cues to prospecting birds.
机译:我们检查了腔温度,腔外部环境温度与70个腔的结构特征之间的关系,并进行了1个晚上的测量,以确定腔栖鸟类是否有可能选择较暖的树木腔进行冬季栖息。空腔的平均温度增量(=空腔环境温度)在-2.4至4.9°C之间变化,并且随着环境温度的昼夜波动,空腔入口较小和空腔树的健康状况而增加。健康树木的空洞要比枯树的空洞温暖,但随着平均环境温度的升高,这种差异消失了。树木健康状况与平均环境温度的影响以及环境温度的昼夜波动之间的这种相互作用通过对五个洞连续12个晚上进行的温度重复测量分析的支持得到了支持。腔内微气候的可变性使得选择温暖的栖息地成为可能,而微气候的预测因素可能会为寻找鸟类提供间接线索。

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