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Effects of runoff sensitivity and catchment characteristics on regional actual evapotranspiration trends in the conterminous US

机译:径流敏感性和汇水特征对美国本土区域实际蒸散趋势的影响

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An understanding of the role of hydro-climatic and geographic regimes on regional actual evapotranspiration (AET) change is essential to improving our knowledge on predicting water availability in a changing climate. This study investigates the relationship between AET change for a 60 year period (1951–2010) and the runoff sensitivity in 255 undisturbed catchments over the US. The runoff sensitivity to climate change is simply defined as the relative magnitude between runoff and precipitation changes with time. Runoff sensitivity can readily explain the conflicting directions of AET changes under similar precipitation change. Under increasing precipitation, AET decreases when runoff is increasing more rapidly than precipitation based on the water balance. Conversely, AET increases when runoff is decreasing more rapidly than precipitation. This result indicates that runoff sensitivity to climate change is a key factor for understanding regional water availability change at the catchment scale. In addition, a stepwise multiple regression analysis and a geographically weighted regression analysis show that the portion of evergreen forest and the mean elevation of a catchment may play a secondary role in the spatial pattern of the AET change, and the relative importance of such explanatory variables may change over space.
机译:了解水文气候和地理制度在区域实际蒸散量(AET)变化中的作用,对于增进我们对气候变化中预测水的可利用性的认识至关重要。这项研究调查了美国60年间(1951-2010年)的AET变化与255个未受干扰流域的径流敏感性之间的关系。径流对气候变化的敏感性简单定义为径流与降水量之间的相对量级随时间变化。径流敏感性可以很容易地解释相似降水变化下AET变化的相互矛盾的方向。在降水增加的情况下,基于水量平衡,当径流量比降水增加得更快时,AET会降低。相反,当径流量比降水减少得更快时,AET增加。该结果表明,径流对气候变化的敏感性是了解流域尺度上区域水资源可用性变化的关键因素。此外,逐步多元回归分析和地理加权回归分析表明,常绿森林的部分和流域的平均海拔可能在AET变化的空间格局中起次要作用,并且这些解释变量的相对重要性可能会随着空间变化。

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