Internal Variability Dominates the Spatial Heterogeneity of Recent Trends in Eurasian Winter Cold Extremes

Abstract Eurasia, with its large and climate‐vulnerable population, has experienced increased cold extremes despite global warming, yet their pronounced spatial heterogeneity remains poorly understood. We examine low‐frequency trends in Eurasian cold extremes over recent decades. Results reveal a marked zonal asymmetry, with strengthening and increasing of cold extremes over central Eurasia and weakening and decreasing of cold extremes at higher and lower latitudes. A quantitative decomposition shows that the cooling is driven primarily by internal variability rather than external forcing. The zonal asymmetry in trends is strongly associated with multidecadal variability in both the Pacific and Atlantic basins. Particularly, in the cooling region, the Atlantic‐related dynamical response appears to outweigh its thermodynamic effect. Future responses, evolving through to the end of the twenty‐first century, are scenario dependent: cold extremes increase under low‐to‐moderate emissions but decline under high emissions, as forced warming overwhelms the effect of internal variability in the far future.

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Publication Details

Journal
Geophysical Research Letters
Published
2026-09-17
DOI
https://doi.org/10.1029/2026gl124591
Primary Topic
Climate variability and models
Type
article
Field-Weighted Citation Impact
0.00

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article

Internal Variability Dominates the Spatial Heterogeneity of Recent Trends in Eurasian Winter Cold Extremes

Danqing Huang, Daokai Xue, Anqi Liu
Geophysical Research Letters
Climate variability and models
article

Internal Variability Dominates the Spatial Heterogeneity of Recent Trends in Eurasian Winter Cold Extremes

Danqing Huang, Daokai Xue, Anqi Liu
article en

Abstract

Abstract Eurasia, with its large and climate‐vulnerable population, has experienced increased cold extremes despite global warming, yet their pronounced spatial heterogeneity remains poorly understood. We examine low‐frequency trends in Eurasian cold extremes over recent decades. Results reveal a marked zonal asymmetry, with strengthening and increasing of cold extremes over central Eurasia and weakening and decreasing of cold extremes at higher and lower latitudes. A quantitative decomposition shows that the cooling is driven primarily by internal variability rather than external forcing. The zonal asymmetry in trends is strongly associated with multidecadal variability in both the Pacific and Atlantic basins. Particularly, in the cooling region, the Atlantic‐related dynamical response appears to outweigh its thermodynamic effect. Future responses, evolving through to the end of the twenty‐first century, are scenario dependent: cold extremes increase under low‐to‐moderate emissions but decline under high emissions, as forced warming overwhelms the effect of internal variability in the far future.

Geophysical Research LettersVol. 53(18)
Nanjing University (CN)
National Natural Science Foundation of China
Climate action
Openalex Percentile: Top 39%
Climate variability and models
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Internal Variability Dominates the Spatial Heterogeneity of Recent Trends in Eurasian Winter Cold Extremes — Danqing Huang, Daokai Xue, et al. · Geophysical Research Letters (2026) | TGRS Research Map | TGRS