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Published on: December 27, 2017
Climate drives observational changes in hydrological extremes across most global regions
Ning Wang1, Fubao Sun2,3, Wenbin Liu2
1National Institute of Natural Hazards, Ministry of Emergency Management of China, Beijing 100085, China.
None:
Identifying the common dominant drivers of hydrological extremes (floods and droughts) occurring in the same regions within a single year is crucial for developing effective adaptive strategies in response to such events. However, this aspect remains insufficiently explored in current global assessments. To address this gap, we analyze changes in drought and flood flow in the same regions, along with their potential dominant drivers, across 9,531 global hydrological stations, for the period 1980-2014. Our findings indicate a simultaneous increase (constituting 28.14%) or decrease (constituting 33.36%) in both drought and flood flow across the majority of global regions. Regions such as Alaska, Central America, the Amazon region, and Northern and Central Europe are primarily influenced by anthropogenic activities, including water withdrawal and changes in vegetation cover. In contrast, other regions, particularly in the Southern Hemisphere, are predominantly influenced by climatic factors, including atmospheric water balance and its seasonal variability. By identifying these common drivers, the study provides critical insights for developing targeted adaptive strategies to mitigate the impacts of hydrological extremes.
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