Global atmosphere-ocean general circulation models have been used to investigate mechanisms controlling the North Atlantic low-frequency variability, with the focus on the Atlantic Meridional Overturning Circulation, the Subpolar Gyre dynamics and the North Atlantic basin scale sea surface temperatures, called the Atlantic Multidecadal Oscillation. The understanding of the dynamics of, and mechanisms behind the variability in these components of the climate system are of great importance for both climate reconstruction and predictability. We have shown that the air-sea interaction plays an important role in the ocean dynamics and ocean circulation in the North Atlantic
The main focus of this study is to investigate the climate variability in the North Atlantic region ...
The question of whether ocean dynamics are relevant for basin-scale North Atlantic decadal temperatu...
The causes of low-frequency sea surface temperature (SST) variations in the Atlantic, known as Atlan...
Global atmosphere-ocean general circulation models have been used to investigate mechanisms controll...
The causes of low-frequency sea surface temperature (SST) variations in the Atlantic, known as Atlan...
A less dynamically active ocean will most likely lead to a more zonal sea surface temperature (SST) ...
The main focus of this study is to investigate the climate variability in the North Atlantic region ...
Ocean heat transport and associated heat loss to the atmosphere contributes significantly to the ano...
The North Atlantic (NA) region plays a key role in the global climate system and exhibits pronounced...
Output from a total of 24 state-of-the-art Atmosphere-Ocean General Circulation Models is analyzed. ...
This article investigates the dynamics and temporal evolution of the Atlantic Multidecadal Variabili...
The North Atlantic (NA) region plays a key role in the global climate system and exhibits pronounced...
We examine the simulated Atlantic Multidecadal Variability (AMV) in a model that includes a correcti...
Analyses of a 500-yr control integration with the non-flux-adjusted coupled atmosphere–sea ice–ocean...
© 2008 The Authors. This work is licensed under a Creative Commons Attribution License. The definit...
The main focus of this study is to investigate the climate variability in the North Atlantic region ...
The question of whether ocean dynamics are relevant for basin-scale North Atlantic decadal temperatu...
The causes of low-frequency sea surface temperature (SST) variations in the Atlantic, known as Atlan...
Global atmosphere-ocean general circulation models have been used to investigate mechanisms controll...
The causes of low-frequency sea surface temperature (SST) variations in the Atlantic, known as Atlan...
A less dynamically active ocean will most likely lead to a more zonal sea surface temperature (SST) ...
The main focus of this study is to investigate the climate variability in the North Atlantic region ...
Ocean heat transport and associated heat loss to the atmosphere contributes significantly to the ano...
The North Atlantic (NA) region plays a key role in the global climate system and exhibits pronounced...
Output from a total of 24 state-of-the-art Atmosphere-Ocean General Circulation Models is analyzed. ...
This article investigates the dynamics and temporal evolution of the Atlantic Multidecadal Variabili...
The North Atlantic (NA) region plays a key role in the global climate system and exhibits pronounced...
We examine the simulated Atlantic Multidecadal Variability (AMV) in a model that includes a correcti...
Analyses of a 500-yr control integration with the non-flux-adjusted coupled atmosphere–sea ice–ocean...
© 2008 The Authors. This work is licensed under a Creative Commons Attribution License. The definit...
The main focus of this study is to investigate the climate variability in the North Atlantic region ...
The question of whether ocean dynamics are relevant for basin-scale North Atlantic decadal temperatu...
The causes of low-frequency sea surface temperature (SST) variations in the Atlantic, known as Atlan...