A 3-D high-resolution coupled hydrodynamic-biogeochemical model of the western Mediterranean was used to study phytoplankton dynamics and organic carbon export in three regions with contrasting vertical regimes, ranging from deep convection to a shallow mixed layer. One month after the initial increase in surface chlorophyll (caused by the erosion of the deep chlorophyll maximum), the autumnal bloom was triggered in all three regions by the upward flux of nutrients resulting from mixed layer deepening. In contrast, at the end of winter, the end of turbulent mixing favored the onset of the spring bloom in the deep convection region. Low grazing pressure allowed rapid phytoplankton growth during the bloom. Primary production in the shallow mi...
In the recent past observational and modelling studies have shown that the vertical displacement of ...
International audienceThis study was a part of the DeWEX project (Deep Water formation Experiment), ...
International audienceUpward motions are often invoked to explain the high productivity of permanent...
Mid-latitude spring blooms of phytoplankton show considerable year-to-year variability in timing, sp...
Mid-latitude spring blooms of phytoplankton show considerable year-to-year variability in timing, sp...
Satellite ocean color observations revealed that unusually deep convection events in 2005, 2006, 201...
International audienceThe Northwestern Mediterranean Sea (NWMS) is one of the most productive areas ...
The response of phytoplankton to various ecological forcings was examined in the upper waters of the...
International audienceSatellite ocean color observations revealed that unusually deep convection eve...
The Northwestern Mediterranean Sea (NWMS) is one of the most productive areas of the Mediterranean S...
International audiencePhytoplankton phenology is primarily affected by physical forcing. However, it...
In the recent past observational and modelling studies have shown that the vertical displacement of ...
International audienceThis study was a part of the DeWEX project (Deep Water formation Experiment), ...
International audienceUpward motions are often invoked to explain the high productivity of permanent...
Mid-latitude spring blooms of phytoplankton show considerable year-to-year variability in timing, sp...
Mid-latitude spring blooms of phytoplankton show considerable year-to-year variability in timing, sp...
Satellite ocean color observations revealed that unusually deep convection events in 2005, 2006, 201...
International audienceThe Northwestern Mediterranean Sea (NWMS) is one of the most productive areas ...
The response of phytoplankton to various ecological forcings was examined in the upper waters of the...
International audienceSatellite ocean color observations revealed that unusually deep convection eve...
The Northwestern Mediterranean Sea (NWMS) is one of the most productive areas of the Mediterranean S...
International audiencePhytoplankton phenology is primarily affected by physical forcing. However, it...
In the recent past observational and modelling studies have shown that the vertical displacement of ...
International audienceThis study was a part of the DeWEX project (Deep Water formation Experiment), ...
International audienceUpward motions are often invoked to explain the high productivity of permanent...