Observed changes in dry-season water availability attributed to human-induced climate change

蒸散量 干燥 气候变化 环境科学 降水 气候学 水循环 全球变暖 旱季 气候模式 水资源 纬度 自然地理学 地理 生态学 地质学 气象学 生物 医学 外科 地图学 大地测量学
作者
Ryan S. Padrón,Lukas Gudmundsson,Bertrand Decharme,Agnès Ducharne,David M. Lawrence,Jiafu Mao,Daniele Peano,Gerhard Krinner,Hyungjun Kim,Sonia I. Seneviratne
出处
期刊:Nature Geoscience [Springer Nature]
卷期号:13 (7): 477-481 被引量:289
标识
DOI:10.1038/s41561-020-0594-1
摘要

Human-induced climate change impacts the hydrological cycle and thus the availability of water resources. However, previous assessments of observed warming-induced changes in dryness have not excluded natural climate variability and show conflicting results due to uncertainties in our understanding of the response of evapotranspiration. Here we employ data-driven and land-surface models to produce observation-based global reconstructions of water availability from 1902 to 2014, a period during which our planet experienced a global warming of approximately 1 °C. Our analysis reveals a spatial pattern of changes in average water availability during the driest month of the year over the past three decades compared with the first half of the twentieth century, with some regions experiencing increased and some decreased water availability. The global pattern is consistent with climate model estimates that account for anthropogenic effects, and it is not expected from natural climate variability, supporting human-induced climate change as the cause. There is regional evidence of drier dry seasons predominantly in extratropical latitudes and including Europe, western North America, northern Asia, southern South America, Australia and eastern Africa. We also find that the intensification of the dry season is generally a consequence of increasing evapotranspiration rather than decreasing precipitation. Regional changes in dry-season water availability over recent decades can be attributed to human-induced climate change, according to analyses of global reconstructions.
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