Water mass transformation in the Nordic Seas and the associated overflow of dense waters across the Greenland-Scotland Ridge (GSR) acts to maintain the lower limb of the Atlantic meridional overturning circulation. Here, we use ocean and atmospheric reanalysis to assess the temporal variability in the Nordic Seas overturning circulation between 1950 and 2020 and its relation to surface buoyancy forcing. We find that variable surface-forced transformation of Atlantic waters in the eastern Nordic Seas can explain variations in overflow transport across the GSR. The production of dense water masses in the Greenland and Iceland Seas is of minor importance to overflow variability. The Nordic Seas overturning circulation shows pronounced multidec...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
There is a growing body of evidence suggesting that the density and speed of the Nordic Seas overflo...
Overflow water from the Nordic Seas comprises the deepest limb of the Atlantic Meridional Overturnin...
Dense Nordic waters enter the North Atlantic through passages in the Greenland-Scotland Ridge at a m...
The Nordic Seas Overflows constitute the densest component of the deep limb of the Atlantic Meridion...
There is a growing body of evidence suggesting that the density and speed of the Nordic Seas overflo...
The Atlantic Meridional Overturning Circulation (AMOC) is part of a global redistribution system in ...
The Atlantic meridional overturning circulation and associated poleward heat transport are balanced ...
The Atlantic meridional overturning circulation and associated poleward heat transport are balanced ...
Changes in the climate system over recent decades have had profound impacts on the mean state and va...
In the present climate, the North Atlantic thermohaline circulation (THC) plays a fundamental role i...
Variability in the Atlantic Meridional Overturning Circulation (AMOC) has been analysed using a 600-...
Dense water masses formed in the Nordic Seas flow across the Greenland–Scotland Ridge and contribute...
Water mass transformation in the Nordic and Barents Seas, triggered by air-sea heat fluxes, is an in...
Dense water masses formed in the Nordic Seas flow across the Greenland–Scotland Ridge and contribute...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
There is a growing body of evidence suggesting that the density and speed of the Nordic Seas overflo...
Overflow water from the Nordic Seas comprises the deepest limb of the Atlantic Meridional Overturnin...
Dense Nordic waters enter the North Atlantic through passages in the Greenland-Scotland Ridge at a m...
The Nordic Seas Overflows constitute the densest component of the deep limb of the Atlantic Meridion...
There is a growing body of evidence suggesting that the density and speed of the Nordic Seas overflo...
The Atlantic Meridional Overturning Circulation (AMOC) is part of a global redistribution system in ...
The Atlantic meridional overturning circulation and associated poleward heat transport are balanced ...
The Atlantic meridional overturning circulation and associated poleward heat transport are balanced ...
Changes in the climate system over recent decades have had profound impacts on the mean state and va...
In the present climate, the North Atlantic thermohaline circulation (THC) plays a fundamental role i...
Variability in the Atlantic Meridional Overturning Circulation (AMOC) has been analysed using a 600-...
Dense water masses formed in the Nordic Seas flow across the Greenland–Scotland Ridge and contribute...
Water mass transformation in the Nordic and Barents Seas, triggered by air-sea heat fluxes, is an in...
Dense water masses formed in the Nordic Seas flow across the Greenland–Scotland Ridge and contribute...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
There is a growing body of evidence suggesting that the density and speed of the Nordic Seas overflo...
Overflow water from the Nordic Seas comprises the deepest limb of the Atlantic Meridional Overturnin...