Variability in the North Atlantic ocean heat transport at 26.5°N on short (5 day) timescales is identified and contrasted with different behaviour at monthly intervals using a combination of RAPID/MOCHA/WBTS measurements and the NEMO‐LIM2 1/12° ocean circulation/sea ice model. Wind forcing plays the leading role in establishing the heat transport variability through the Ekman transport response of the ocean and the associated driving atmospheric conditions vary significantly with timescale. We find that at 5 day timescales the largest changes in the heat transport across 26.5°N coincide with north‐westerly airflows originating over the American land mass that drive strong southward anomalies in the Ekman flow. During these events the northw...
Coupled atmosphere–ocean dynamics in the North Atlantic is studied by means of a simple model, featu...
We examine the simulated Atlantic Multidecadal Variability (AMV) in a model that includes a correcti...
The Atlantic meridional overturning circulation comprises warm upper waters flowing northward, becom...
Variability in the North Atlantic ocean heat transport at 26.5°N on short (5-day) timescales is iden...
Variability in the North Atlantic ocean heat transport at 26.5°N on short (5 day) timescales is iden...
Variability in the North Atlantic ocean heat transport at 26.5N on short (5-day) timescales is ident...
Local climate is significantly affected by changes in the oceanic heat content on a range of timesca...
Basin-scale thermal anomalies in the North Atlantic, extending to depths of 1–2 km, are more pronoun...
Observations show that the upper 2 km of the subtropical North Atlantic Ocean cooled throughout 2010...
A recent state estimate covering the period 1992–2010 from the Estimating the Circulation and Climat...
[1] Observations show that the upper 2 km of the subtropical North Atlantic Ocean cooled throughout ...
The ocean’s role in global climate change largely depends on its heat transport. Therefore, understa...
In a regional study of the eastern North Atlantic Ocean east of 35°W between 41°N and 8°N the mean m...
AbstractAn analysis of a three-member ensemble of initialized coupled simulations with the MPI-ESM-L...
Seasonal meridional ocean temperature fluxes were computed in a regional study of the eastern North ...
Coupled atmosphere–ocean dynamics in the North Atlantic is studied by means of a simple model, featu...
We examine the simulated Atlantic Multidecadal Variability (AMV) in a model that includes a correcti...
The Atlantic meridional overturning circulation comprises warm upper waters flowing northward, becom...
Variability in the North Atlantic ocean heat transport at 26.5°N on short (5-day) timescales is iden...
Variability in the North Atlantic ocean heat transport at 26.5°N on short (5 day) timescales is iden...
Variability in the North Atlantic ocean heat transport at 26.5N on short (5-day) timescales is ident...
Local climate is significantly affected by changes in the oceanic heat content on a range of timesca...
Basin-scale thermal anomalies in the North Atlantic, extending to depths of 1–2 km, are more pronoun...
Observations show that the upper 2 km of the subtropical North Atlantic Ocean cooled throughout 2010...
A recent state estimate covering the period 1992–2010 from the Estimating the Circulation and Climat...
[1] Observations show that the upper 2 km of the subtropical North Atlantic Ocean cooled throughout ...
The ocean’s role in global climate change largely depends on its heat transport. Therefore, understa...
In a regional study of the eastern North Atlantic Ocean east of 35°W between 41°N and 8°N the mean m...
AbstractAn analysis of a three-member ensemble of initialized coupled simulations with the MPI-ESM-L...
Seasonal meridional ocean temperature fluxes were computed in a regional study of the eastern North ...
Coupled atmosphere–ocean dynamics in the North Atlantic is studied by means of a simple model, featu...
We examine the simulated Atlantic Multidecadal Variability (AMV) in a model that includes a correcti...
The Atlantic meridional overturning circulation comprises warm upper waters flowing northward, becom...