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Evidence for a wavier jet stream in response to rapid Arctic warming

Environmental Research Letters · 2015 · Vol. 10(1) · pp. 014005–014005
Jennifer A. FrancisStephen J. Vavrus

Abstract

New metrics and evidence are presented that support a linkage between rapid Arctic warming, relative to Northern hemisphere mid-latitudes, and more frequent high-amplitude (wavy) jet-stream configurations that favor persistent weather patterns. We find robust relationships among seasonal and regional patterns of weaker poleward thickness gradients, weaker zonal upper-level winds, and a more meridional flow direction. These results suggest that as the Arctic continues to warm faster than elsewhere in response to rising greenhouse-gas concentrations, the frequency of extreme weather events caused by persistent jet-stream patterns will increase.

Climate variability and modelsArctic and Antarctic ice dynamicsAtmospheric and Environmental Gas DynamicsJet streamArcticClimatologyEnvironmental scienceNorthern HemisphereLatitudeAtmospheric sciencesThe arcticJet (fluid)Zonal and meridional

Funding

  • National Science Foundation
  • Division of Arctic Sciences
Citations
668
FWCI
39.94
field-weighted impact
References
44
Percentile
100%
vs. same field & year
Citations per year
References
Recent Arctic amplification and extreme mid-latitude weather
Nature Geoscience · 2014 · 2,495 citations
Evidence linking Arctic amplification to extreme weather in mid‐latitudes
Geophysical Research Letters · 2012 · 1,815 citations
The NCEP/NCAR 40-Year Reanalysis Project
Bulletin of the American Meteorological Society · 1996 · 29,024 citations
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Evidence for a wavier jet stream in response to rapid Arctic warming
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