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Recent Arctic amplification and extreme mid-latitude weather
by
Barlow, Mathew
, Dethloff, Klaus
, Cohen, Judah
, Screen, James A.
, Whittleston, David
, Coumou, Dim
, Francis, Jennifer
, Jones, Justin
, Overland, James
, Entekhabi, Dara
, Furtado, Jason C.
in
704/106/125
/ 704/106/35/823
/ 704/106/694/2739
/ Arctic zone
/ Climate change
/ Climate models
/ Earth Sciences
/ Earth System Sciences
/ Extreme weather
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ Latitude
/ review-article
/ Sea ice
/ Snow cover
2014
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Recent Arctic amplification and extreme mid-latitude weather
by
Barlow, Mathew
, Dethloff, Klaus
, Cohen, Judah
, Screen, James A.
, Whittleston, David
, Coumou, Dim
, Francis, Jennifer
, Jones, Justin
, Overland, James
, Entekhabi, Dara
, Furtado, Jason C.
in
704/106/125
/ 704/106/35/823
/ 704/106/694/2739
/ Arctic zone
/ Climate change
/ Climate models
/ Earth Sciences
/ Earth System Sciences
/ Extreme weather
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ Latitude
/ review-article
/ Sea ice
/ Snow cover
2014
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Recent Arctic amplification and extreme mid-latitude weather
by
Barlow, Mathew
, Dethloff, Klaus
, Cohen, Judah
, Screen, James A.
, Whittleston, David
, Coumou, Dim
, Francis, Jennifer
, Jones, Justin
, Overland, James
, Entekhabi, Dara
, Furtado, Jason C.
in
704/106/125
/ 704/106/35/823
/ 704/106/694/2739
/ Arctic zone
/ Climate change
/ Climate models
/ Earth Sciences
/ Earth System Sciences
/ Extreme weather
/ Geochemistry
/ Geology
/ Geophysics/Geodesy
/ Latitude
/ review-article
/ Sea ice
/ Snow cover
2014
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Recent Arctic amplification and extreme mid-latitude weather
Journal Article
Recent Arctic amplification and extreme mid-latitude weather
2014
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Overview
The Arctic has warmed more than twice as fast as the global average. A literature synthesis discusses mechanisms how the associated decline in sea ice and snow cover could potentially alter mid-latitude weather, but uncertainties are profound.
The Arctic region has warmed more than twice as fast as the global average — a phenomenon known as Arctic amplification. The rapid Arctic warming has contributed to dramatic melting of Arctic sea ice and spring snow cover, at a pace greater than that simulated by climate models. These profound changes to the Arctic system have coincided with a period of ostensibly more frequent extreme weather events across the Northern Hemisphere mid-latitudes, including severe winters. The possibility of a link between Arctic change and mid-latitude weather has spurred research activities that reveal three potential dynamical pathways linking Arctic amplification to mid-latitude weather: changes in storm tracks, the jet stream, and planetary waves and their associated energy propagation. Through changes in these key atmospheric features, it is possible, in principle, for sea ice and snow cover to jointly influence mid-latitude weather. However, because of incomplete knowledge of how high-latitude climate change influences these phenomena, combined with sparse and short data records, and imperfect models, large uncertainties regarding the magnitude of such an influence remain. We conclude that improved process understanding, sustained and additional Arctic observations, and better coordinated modelling studies will be needed to advance our understanding of the influences on mid-latitude weather and extreme events.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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