Ocean circulation causes the largest freshening event for 120 years in eastern subpolar North Atlantic

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作者
N. Penny Holliday
Manfred Bersch
Barbara Berx
Léon Chafik
Stuart Cunningham
Cristian Florindo-López
Hjálmar Hátún
William Johns
Simon A. Josey
Karin Margretha H. Larsen
Sandrine Mulet
Marilena Oltmanns
Gilles Reverdin
Tom Rossby
Virginie Thierry
Hedinn Valdimarsson
Igor Yashayaev
机构
[1] National Oceanography Centre,Institute of Oceanography
[2] University of Hamburg,Department of Meteorology and Bolin Centre for Climate Research
[3] Marine Scotland Science,Department of Ocean Sciences, Rosenstiel School of Marine and Atmospheric Science
[4] Stockholm University,Ocean Circulation and Climate Dynamics
[5] Scottish Association for Marine Science,Graduate School of Oceanography
[6] Faroe Marine Research Institute,Ifremer, Univ. Brest, CNRS, IRD
[7] University of Miami,undefined
[8] CLS,undefined
[9] GEOMAR Helmholtz Centre for Ocean Research Kiel,undefined
[10] Sorbonne Université,undefined
[11] CNRS/IRD/MNHN (LOCEAN),undefined
[12] University of Rhode Island,undefined
[13] Laboratoire d’Océanographie Physique et Spatiale,undefined
[14] Marine and Freshwater Research Institute,undefined
[15] Bedford Institute of Oceanography,undefined
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The Atlantic Ocean overturning circulation is important to the climate system because it carries heat and carbon northward, and from the surface to the deep ocean. The high salinity of the subpolar North Atlantic is a prerequisite for overturning circulation, and strong freshening could herald a slowdown. We show that the eastern subpolar North Atlantic underwent extreme freshening during 2012 to 2016, with a magnitude never seen before in 120 years of measurements. The cause was unusual winter wind patterns driving major changes in ocean circulation, including slowing of the North Atlantic Current and diversion of Arctic freshwater from the western boundary into the eastern basins. We find that wind-driven routing of Arctic-origin freshwater intimately links conditions on the North West Atlantic shelf and slope region with the eastern subpolar basins. This reveals the importance of atmospheric forcing of intra-basin circulation in determining the salinity of the subpolar North Atlantic.
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