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Abrupt cooling over the North Atlantic in modern climate models
by
Drijfhout, Sybren
, Swingedouw, Didier
, Mary, Yannick
, Sgubin, Giovanni
, Bennabi, Amine
in
20th century
/ 704/106/694/2739
/ 704/106/694/2786
/ 704/106/829/2737
/ Climate change
/ Climate models
/ Climatology
/ Cooling
/ Earth Sciences
/ Humanities and Social Sciences
/ multidisciplinary
/ Oceanic convection
/ Risk assessment
/ Science
/ Sciences of the Universe
/ Surface water
2017
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Abrupt cooling over the North Atlantic in modern climate models
by
Drijfhout, Sybren
, Swingedouw, Didier
, Mary, Yannick
, Sgubin, Giovanni
, Bennabi, Amine
in
20th century
/ 704/106/694/2739
/ 704/106/694/2786
/ 704/106/829/2737
/ Climate change
/ Climate models
/ Climatology
/ Cooling
/ Earth Sciences
/ Humanities and Social Sciences
/ multidisciplinary
/ Oceanic convection
/ Risk assessment
/ Science
/ Sciences of the Universe
/ Surface water
2017
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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?
Abrupt cooling over the North Atlantic in modern climate models
by
Drijfhout, Sybren
, Swingedouw, Didier
, Mary, Yannick
, Sgubin, Giovanni
, Bennabi, Amine
in
20th century
/ 704/106/694/2739
/ 704/106/694/2786
/ 704/106/829/2737
/ Climate change
/ Climate models
/ Climatology
/ Cooling
/ Earth Sciences
/ Humanities and Social Sciences
/ multidisciplinary
/ Oceanic convection
/ Risk assessment
/ Science
/ Sciences of the Universe
/ Surface water
2017
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Abrupt cooling over the North Atlantic in modern climate models
Journal Article
Abrupt cooling over the North Atlantic in modern climate models
2017
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Overview
Observations over the 20th century evidence no long-term warming in the subpolar North Atlantic (SPG). This region even experienced a rapid cooling around 1970, raising a debate over its potential reoccurrence. Here we assess the risk of future abrupt SPG cooling in 40 climate models from the fifth Coupled Model Intercomparison Project (CMIP5). Contrary to the long-term SPG warming trend evidenced by most of the models, 17.5% of the models (7/40) project a rapid SPG cooling, consistent with a collapse of the local deep-ocean convection. Uncertainty in projections is associated with the models’ varying capability in simulating the present-day SPG stratification, whose realistic reproduction appears a necessary condition for the onset of a convection collapse. This event occurs in 45.5% of the 11 models best able to simulate the observed SPG stratification. Thus, due to systematic model biases, the CMIP5 ensemble as a whole underestimates the chance of future abrupt SPG cooling, entailing crucial implications for observation and adaptation policy.
Concerns on climate change include the risk of abrupt cooling in the North Atlantic. Here, the authors analyse CMIP5 projections and show that a convection collapse in the subpolar gyre can cool this region by up to 3°C in 10 years, which is as likely to occur by 2100 as a continuous warming.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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