Increased Summer European Heatwaves in Recent Decades: Contributions From Greenhouse Gases‐Induced Warming and Atlantic Multidecadal Oscillation‐Like Variations

Author:

Luo Binhe1,Luo Dehai23ORCID,Zhuo Wenqing4,Xiao Cunde1ORCID,Dai Aiguo5ORCID,Simmonds Ian6,Yao Yao2ORCID,Diao Yina4ORCID,Gong Tingting78

Affiliation:

1. State Key Laboratory of Earth Surface Processes and Resource Ecology Beijing Normal University Beijing China

2. Key Laboratory of Regional Climate‐Environment for Temperate East Asia Institute of Atmospheric Physics Chinese Academy of Science Beijing China

3. University of Chinese Academy of Sciences Beijing China

4. College of Oceanic and Atmospheric Sciences Ocean University of China Qingdao China

5. Department of Atmospheric and Environmental Sciences State University of New York Albany NY USA

6. School of Geography, Earth and Atmospheric Sciences University of Melbourne Melbourne VIC Australia

7. CAS Key Laboratory of Ocean Circulation and Waves Institute of Oceanology Chinese Academy of Sciences Qingdao China

8. Pilot National Laboratory for Marine Science and Technology (Qingdao) Qingdao China

Abstract

AbstractSummer heatwaves over Europe, which can cause many deaths and severe damage, have become increasingly frequent over central and eastern Europe and western Russia in recent decades. In this paper, we estimate the contributions of the warming due to increased greenhouse gases (GHG) and nonlinear variations correlated with the Atlantic Multidecadal Oscillation (AMO) to the observed heatwave trend over Europe during 1980–2021, when the GHG‐induced warming over Europe exhibits a linear trend. It is found that GHG‐induced warming contributes to ∼57% of the European heatwave trend over 1980–2021, while the cold‐to‐warm phase shift of the AMO‐like variations accounts for ∼43% of the trend via the intensification of midlatitude North Atlantic jet. The recent trend of heatwaves over western and northern Europe is mainly due to GHG‐induced warming, while that over central and eastern Europe and western Russia is primarily related to the combined effect of the AMO‐like variations and GHG‐induced warming. To some extent, GHG‐induced warming is an amplifier of the increasing trend of recent AMO‐related European heatwaves. Moreover, European blocking (Ural blocking, UB) is shown to contribute to 55% (42%) of the AMO‐related heatwave trend via the influence of midlatitude North Atlantic jet. In the presence of a strong North Atlantic jet during the recent warm AMO phase, UB events concurrent with positive‐phase North Atlantic Oscillation can cause intense, persistent and widespread heatwaves over Europe such as that observed in the summer of 2022.

Publisher

American Geophysical Union (AGU)

Subject

Earth and Planetary Sciences (miscellaneous),General Environmental Science

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