Correlations between temperature and velocity fluctuations are a significant contribution to the North Atlantic meridional heat transport, especially at the northern boundary of the subtropical gyre. In satellite observations and in a numerical model at 1/12 degrees resolution, a localized pattern of positive eddy heat flux is found northwest of the Gulf Stream, downstream of its separation at Cape Hatteras. It is confined to the upper 500 m. A simple kinematic model of a meandering jet can explain the surface eddy flux, taking into account a spatial shift between the maximum velocity of the jet and the maximum cross-jet temperature gradient. In the Gulf Stream such a spatial shift results from the nonlinear temperature profile and the vert...
Observations of the Gulf Stream thermocline as it meanders over the continental slope off Cape Hatte...
A two-moving-layer diagnostic model with a variable depth mixed layer on top is applied to the annua...
For the North Atlantic storm track to collocate with the ocean front, there has to be efficient rest...
This article is included in the In Honor of Bach-Lien Hua: Ocean Scale Interactions special collecti...
In this paper we investigate the influence of the Gulf Stream SST front on the North Atlantic eddy-d...
The importance of the Gulf Stream Extension region in climate and seasonal prediction research is be...
The Gulf Stream (GS) is central to the global redistribution of heat due to the transport of large v...
Understanding the various mechanisms that control path and transport variability of the Gulf Stream ...
The Gulf Stream Extension Region is a key region for meridional heat transport of the Earth system. ...
International audienceThe variability present in a 1/6th degree Atlantic ocean simulation forced by ...
The role of ocean heat transport variations in recent warming of the North Atlantic is investigated ...
Historical hydrographic sections are used to investigate the seasonal and low frequency variability ...
The ocean carries more heat poleward than the atmosphere at low latitudes, whilst the reverse occurs...
Observations of the Gulf Stream thermocline as it meanders over the continental slope off Cape Hatte...
A two-moving-layer diagnostic model with a variable depth mixed layer on top is applied to the annua...
For the North Atlantic storm track to collocate with the ocean front, there has to be efficient rest...
This article is included in the In Honor of Bach-Lien Hua: Ocean Scale Interactions special collecti...
In this paper we investigate the influence of the Gulf Stream SST front on the North Atlantic eddy-d...
The importance of the Gulf Stream Extension region in climate and seasonal prediction research is be...
The Gulf Stream (GS) is central to the global redistribution of heat due to the transport of large v...
Understanding the various mechanisms that control path and transport variability of the Gulf Stream ...
The Gulf Stream Extension Region is a key region for meridional heat transport of the Earth system. ...
International audienceThe variability present in a 1/6th degree Atlantic ocean simulation forced by ...
The role of ocean heat transport variations in recent warming of the North Atlantic is investigated ...
Historical hydrographic sections are used to investigate the seasonal and low frequency variability ...
The ocean carries more heat poleward than the atmosphere at low latitudes, whilst the reverse occurs...
Observations of the Gulf Stream thermocline as it meanders over the continental slope off Cape Hatte...
A two-moving-layer diagnostic model with a variable depth mixed layer on top is applied to the annua...
For the North Atlantic storm track to collocate with the ocean front, there has to be efficient rest...