温室气体
环境科学
降水
鞭击
自然资源经济学
环境保护
毒物控制
气象学
生态学
环境卫生
地理
医学
生物
经济
作者
Xuezhi Tan,Xinxin Wu,Zeqin Huang,Jianyu Fu,Xuejin Tan,Simin Deng,Yaxin Liu,Thian Yew Gan,Bingjun Liu
标识
DOI:10.1038/s41467-023-38510-9
摘要
Abstract Precipitation whiplash, including abrupt shifts between wet and dry extremes, can cause large adverse impacts on human and natural systems. Here we quantify observed and projected changes in characteristics of sub-seasonal precipitation whiplash and investigate the role of individual anthropogenic influences on these changes. Results show that the occurrence frequency of global precipitation whiplash is projected to be 2.56 ± 0.16 times higher than in 1979–2019 by the end of the 21 st Century, with increasingly rapid and intense transitions between two extremes. The most dramatic increases of whiplash show in the polar and monsoon regions. Changes in precipitation whiplash show a much higher percentage change than precipitation totals. In historical simulations, anthropogenic greenhouse gas (GHG) and aerosol emissions have increased and decreased precipitation whiplash occurrences, respectively. By 2079, anthropogenic GHGs are projected to increase 55 ± 4% of the occurrences risk of precipitation whiplash, which is driven by shifts in circulation patterns conducive to precipitation extremes.
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