Amplification effect of intra-seasonal variability of soil moisture on heat extremes over Eurasia

IF 6.4 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES
Yi-Nuo Wang , Zhi-Yan Zuo , Liang Qiao , Kai-Wen Zhang , Mei-Yu Chang , Dong Xiao , Zou-Xing Lin , Huan Wang
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Abstract

Drying soil has been conducive to a high frequency of extreme high-temperature events over many regions worldwide in recent decades. However, changes in the intraseasonal variability of soil moisture can also influence the likelihood of extremely high temperatures. Although previous investigators have examined the association between extremely high temperatures and large-scale atmospheric circulation variability, the role of land–atmosphere coupling dominated by soil moisture variability in extremely high temperatures, particularly over the Eurasian continent, is not well understood. In this study, on the basis of the Land Surface, Snow, and Soil Moisture Model Intercomparison Project, we found that land–atmosphere feedback amplified the variability of soil moisture in most regions of Eurasia during summer from 1980 to 2014. This amplification of soil moisture variability is closely correlated with more intensive intraseasonal variability of surface air temperature and more frequent occurrences of extreme high-temperature events, particularly in Europe, Siberia, Northeast Asia, and the Indochina Peninsula. This correlation implies that increasing the intraseasonal variability of soil moisture results in a high likelihood of heat extremes during summer in most parts of Eurasia except Asian desert areas. On the intraseasonal timescale, the land–atmosphere coupling increases the variability of surface sensible heat flux and net long-wave radiation heating the atmosphere by intensifying the soil moisture variability, thus amplifying the variability of surface air temperature and enhancing the extreme high-temperature days. This finding demonstrates the importance of changes in intraseasonal soil moisture variability for the increasing likelihood of heat extremes in summer.

土壤水分季节内变化对欧亚大陆极端热量的放大效应
近几十年来,全球许多地区的土壤干燥导致极端高温事件频发。然而,土壤水分季节内变率的变化也会影响极端高温发生的可能性。尽管之前的研究人员已经研究了极端高温与大尺度大气环流变率之间的关联,但对于以土壤水分变率为主导的陆地-大气耦合在极端高温中的作用,尤其是在欧亚大陆上的作用,还不甚了解。在本研究中,我们在陆面、雪和土壤水分模式相互比较项目的基础上发现,1980 年至 2014 年夏季,陆地-大气反馈放大了欧亚大陆大部分地区的土壤水分变率。土壤水分变率的放大与地表气温更密集的季内变率和更频繁的极端高温事件密切相关,尤其是在欧洲、西伯利亚、东北亚和中南半岛。这种相关性意味着,土壤水分季内变率的增加会导致除亚洲沙漠地区以外的欧亚大陆大部分地区夏季出现极端高温的可能性增大。在季节内时间尺度上,陆地-大气耦合通过加剧土壤水分的变化,增加了地表显热通量和加热大气的净长波辐射的变化,从而放大了地表气温的变化,增加了极端高温日。这一发现表明,季节内土壤水分变异性的变化对于增加夏季极端高温的可能性非常重要。
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来源期刊
Advances in Climate Change Research
Advances in Climate Change Research Earth and Planetary Sciences-Atmospheric Science
CiteScore
9.80
自引率
4.10%
发文量
424
审稿时长
107 days
期刊介绍: Advances in Climate Change Research publishes scientific research and analyses on climate change and the interactions of climate change with society. This journal encompasses basic science and economic, social, and policy research, including studies on mitigation and adaptation to climate change. Advances in Climate Change Research attempts to promote research in climate change and provide an impetus for the application of research achievements in numerous aspects, such as socioeconomic sustainable development, responses to the adaptation and mitigation of climate change, diplomatic negotiations of climate and environment policies, and the protection and exploitation of natural resources.
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