Seasonal Features of the Changes in the Frequency of Severe Weather Events in Russian Regions over the Past Decades

IF 1.4 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES
I. I. Mokhov
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Abstract

The changes in the frequency of severe weather events and their seasonal features in Russian regions are analyzed using the data for 1998–2021. More than 2/5 of severe weather events are observed in summer, which is also characterized by the greatest increase in the frequency in the recent decades: by almost 1.5 times, with an increase of 1 K in the Northern Hemisphere surface air temperature. The frequency of extreme events also significantly increases in spring, while the minimum relative increase was found for winter. Significant changes have been identified: in the recent years, there has been at least one severe weather event per day averagely and two to three such events per day in summer. Correlation of the detected trends (in particular, a more significant increase in the frequency of severe weather events in summer months) with the changes in the temperature stratification and moisture capacity of the atmosphere and the intensification of convective processes in the atmosphere under warming has been found. Against the background of the general increasing trend in the frequency of extreme weather events, some features associated with key modes of climate variability (these peculiarities are manifested, in particular, in the atmospheric blocking patterns) are noted in the recent decades.

Abstract Image

过去几十年俄罗斯各地区恶劣天气事件频率变化的季节特征
摘要 利用 1998-2021 年的数据分析了俄罗斯各地区恶劣天气事件发生频率的变化及其季节特征。超过五分之二的恶劣天气事件发生在夏季,这也是近几十年来发生频率增加最多的季节:增加了近 1.5 倍,北半球地表气温增加了 1 K。春季发生极端事件的频率也显著增加,而冬季的相对增幅最小。已发现的显著变化是:近年来,平均每天至少发生一次恶劣天气事件,夏季每天发生两到三次。所发现的趋势(特别是夏季恶劣天气事件频率的显著增加)与大气温度分层和湿度能力的变化以及大气对流过程在气候变暖情况下的加强有关。在极端天气事件发生频率呈总体上升趋势的背景下,人们注意到近几十年来与气候变异的关键模式有关的一些特征(这些特殊性尤其表现在大气阻塞模式上)。
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来源期刊
Russian Meteorology and Hydrology
Russian Meteorology and Hydrology METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
1.70
自引率
28.60%
发文量
44
审稿时长
4-8 weeks
期刊介绍: Russian Meteorology and Hydrology is a peer reviewed journal that covers topical issues of hydrometeorological science and practice: methods of forecasting weather and hydrological phenomena, climate monitoring issues, environmental pollution, space hydrometeorology, agrometeorology.
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