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Characterizing blocking mobility and its role in Northern Hemisphere cold extremes

Dados Bibliográficos

ID15548628
AutoresSeon‐Hwa Kim (0000-0003-4856-609X, Pukyong National University, autor correspondente), Baek‐Min Kim (0000-0002-1717-183X, Pukyong National University)
Ano2025
Volume20
Fascículo10
Páginas104078-104078
Data de publicação2025-09-19
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoEnvironmental Research Letters (JOURNAL)
Identificadores do periódicoISSN: 1748-9326 • E-ISSN: 1748-9326
EditoraIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ae0957
OpenAlexW4414362910
IdiomaEN
Referências citadas44

Atmospheric blocking events, commonly studied as quasi-stationary regional phenomena, are often observed with zonal movement influenced by the background flow, retrograding Rossby waves, and sea ice cover. However, the effects of these movements on cold extremes remain understudied. This study classifies the movements of atmospheric blocking into westward-moving, eastward-moving, and quasi-stationary across different regions during winters from 1979/80–2020/21 and investigates their respective impacts on surface air temperature. We found that, in the western North Pacific, westward-moving blocking events exhibited the highest frequency, while other regions showed quasi-stationary blocking occurring most frequently. These results reveal the regional difference in the frequency of blocking movement types, but the blocking persistence showed a common characteristic across all regions, with westward-moving blocking events persisting longer compared to other types. Interestingly, these long-lasting and westward-moving blockings were associated with notable cold temperature anomalies in downstream areas during blocking dissipation phase. This arises from the enhanced advection of high-latitude mean cold temperature by blocking-induced wind anomalies at low levels, despite their relatively low occurrences. These characteristics were successfully reproduced in Community Earth System Model version 1 Large Ensemble (CESM1-LENS) simulations, suggesting that better understanding of blocking mobility can improve our ability to predict extreme cold winters

Advection · Blocking (statistics · Extreme Cold · Lead (geology · Northern Hemisphere · Sea surface temperature · Climate variability and models · Cryospheric studies and observations · Ocean Acidification Effects and Responses

  • The Community Earth System Model

    James W Hurrell, M M Holland et al.•Bulletin of the American…•2013

  • The Community Earth System Model (Cesm) Large Ensemble Project

    Open Access•Jennifer E Kay, Clara Deser et al.•Bulletin of the American…•2015

  • A Formulation of a Phase-Independent Wave-Activity Flux for Stationary and Migratory Quasigeostrophic Eddies on a Zonally Varying Basic Flow

    Koutarou Takaya, Hisashi Nakamura•Journal of the Atmospheric Sciences•2001

  • The ERA5 global reanalysis

    Open Access•Hans Hersbach, Bill Bell et al.•Quarterly Journal of the Royal…•2020

  • Response of moist and dry processes in atmospheric blocking to climate change

    Open Access•Daniel Steinfeld, Michael Sprenger et al.•Environmental Research Letters•2022

  • Anthropogenic influence on Northern Hemisphere blocking during the winter 1960/1961–2012/2013

    Open Access•Dong Chen, Shaobo Qiao et al.•Environmental Research Letters•2021

  • Combined impact of the cold vortex and atmospheric blocking on cold outbreaks over East Asia and the potential for short-range prediction of such occurrences

    Open Access•Wenqin Zhuo, Yao Yao et al.•Environmental Research Letters•2022

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