Hydrographic data from full-depth moorings maintained by the Rapid/\-MOCHA project and spanning the Atlantic at 26° N are decomposed into vertical modes in order to give a dynamical framework for interpreting the observed fluctuations. Vertical modes at each mooring are fit to pressure perturbations using a Gauss-Markov inversion. Away from boundaries, the vertical structure is almost entirely described by the first baroclinic mode, as confirmed by high correlation between the original signal and reconstructions using only the first baroclinic mode. These first baroclinic motions are also highly coherent with altimetric sea surface height (SSH). Within a Rossby radius (45 km) of the western and eastern boundaries, however, the decomposition...
A decomposition of meridional overturning circulation (MOC) cells into geostrophic vertical shears, ...
The inter- and intra-annual variability of the western boundary North Atlantic 26.5 ◦N region has be...
A decomposition of meridional overturning circulation (MOC) cells into geostrophic vertical shears, ...
Abstract. Hydrographic data from full-depth moorings maintained by the Rapid/MOCHA project and spann...
The meridional overturning circulation (MOC) at inline image in the Atlantic has a standard deviatio...
The meridional overturning circulation (MOC) at 26.5N in the Atlantic has a standard deviation of 4....
The temporal variability of the Atlantic Meridional Overturning Circulation (AMOC) is driven both by...
Vertical mixing in the ocean contributes to sustain the Meridionnal Overturning. Circulation (MOC) b...
International audienceA 1/6° numerical simulation is used to investigate the vertical structure of w...
The inter- and intra-annual variability of the western boundary North Atlantic 26.5 ?N region has be...
In this paper we investigate the possibility of determining North Atlantic meridional transport var...
Analyses of meridional transport time series from the Rapid Climate Change–Meridional Overturning Ci...
A decomposition of meridional overturning circulation (MOC) cells into geostrophic vertical shears, ...
Interpretation of sea surface height anomaly (SSHA) and wind forcing of first baroclinic mode Rossby...
Propagating features and waves occur everywhere in the ocean. This paper derives a concise descripti...
A decomposition of meridional overturning circulation (MOC) cells into geostrophic vertical shears, ...
The inter- and intra-annual variability of the western boundary North Atlantic 26.5 ◦N region has be...
A decomposition of meridional overturning circulation (MOC) cells into geostrophic vertical shears, ...
Abstract. Hydrographic data from full-depth moorings maintained by the Rapid/MOCHA project and spann...
The meridional overturning circulation (MOC) at inline image in the Atlantic has a standard deviatio...
The meridional overturning circulation (MOC) at 26.5N in the Atlantic has a standard deviation of 4....
The temporal variability of the Atlantic Meridional Overturning Circulation (AMOC) is driven both by...
Vertical mixing in the ocean contributes to sustain the Meridionnal Overturning. Circulation (MOC) b...
International audienceA 1/6° numerical simulation is used to investigate the vertical structure of w...
The inter- and intra-annual variability of the western boundary North Atlantic 26.5 ?N region has be...
In this paper we investigate the possibility of determining North Atlantic meridional transport var...
Analyses of meridional transport time series from the Rapid Climate Change–Meridional Overturning Ci...
A decomposition of meridional overturning circulation (MOC) cells into geostrophic vertical shears, ...
Interpretation of sea surface height anomaly (SSHA) and wind forcing of first baroclinic mode Rossby...
Propagating features and waves occur everywhere in the ocean. This paper derives a concise descripti...
A decomposition of meridional overturning circulation (MOC) cells into geostrophic vertical shears, ...
The inter- and intra-annual variability of the western boundary North Atlantic 26.5 ◦N region has be...
A decomposition of meridional overturning circulation (MOC) cells into geostrophic vertical shears, ...