International audienceA 3D coupled physical-biogeochemical model is developed and applied to Bizerte Lagoon (Tunisia), in order to understand and quantitatively assess its hydrobiological functioning and nutrients budget. The biogeochemical module accounts for nitrogen and phosphorus and includes the water column and upper sediment layer. The simulations showed that water circulation and the seasonal patterns of nutrients, phytoplankton and dissolved oxygen were satisfactorily reproduced. Model results indicate that water circulation in the lagoon is driven mainly by tide and wind. Plankton primary production is co-limited by phosphorus and nitrogen, and is highest in the inner part of the lagoon, due to the combined effects of high water r...
Terrestrial inputs (natural and anthropogenic) from rivers, the atmosphere and physical processes st...
A coupling between a 3-D mesoscale hydrodynamic model and a biogeochemical model was performed in th...
A 3D advection-diffusion-reaction model is proposed to investigate the abundance of phytoplankton in...
International audienceA 3D coupled physical-biogeochemical model is developed and applied to Bizerte...
Phytoplankton blooms are very important events allowing the understanding of the coastal ecosystem d...
The Soil and Water Assessment Tool (SWAT model, 2001 Version) has been applied to the Than lagoon ca...
International audienceA steady-state model of the planktonic food web of the Bizerte Lagoon (Tunisia...
In this study, an NPZD model and a trophic network model that contains organism groups on the higher...
The biological production characteristics of the Rhodes and western Ionian basins of the eastern Med...
International audienceAn ecological model for the solar saltern of Sfax (Tunisia) was established an...
In this study, the Land-Ocean Interactions in the Coastal Zone (LOICZ) budgeting procedure was used ...
A coupled 3D hydrodynamic-biogeochemical model was developed and implemented for the Sacca di Goro c...
International audienceThe 3D hydrodynamic Model for Applications at Regional Scale (MARS3D) was coup...
Terrestrial inputs (natural and anthropogenic) from rivers, the atmosphere and physical processes st...
Terrestrial inputs (natural and anthropogenic) from rivers, the atmosphere and physical processes st...
A coupling between a 3-D mesoscale hydrodynamic model and a biogeochemical model was performed in th...
A 3D advection-diffusion-reaction model is proposed to investigate the abundance of phytoplankton in...
International audienceA 3D coupled physical-biogeochemical model is developed and applied to Bizerte...
Phytoplankton blooms are very important events allowing the understanding of the coastal ecosystem d...
The Soil and Water Assessment Tool (SWAT model, 2001 Version) has been applied to the Than lagoon ca...
International audienceA steady-state model of the planktonic food web of the Bizerte Lagoon (Tunisia...
In this study, an NPZD model and a trophic network model that contains organism groups on the higher...
The biological production characteristics of the Rhodes and western Ionian basins of the eastern Med...
International audienceAn ecological model for the solar saltern of Sfax (Tunisia) was established an...
In this study, the Land-Ocean Interactions in the Coastal Zone (LOICZ) budgeting procedure was used ...
A coupled 3D hydrodynamic-biogeochemical model was developed and implemented for the Sacca di Goro c...
International audienceThe 3D hydrodynamic Model for Applications at Regional Scale (MARS3D) was coup...
Terrestrial inputs (natural and anthropogenic) from rivers, the atmosphere and physical processes st...
Terrestrial inputs (natural and anthropogenic) from rivers, the atmosphere and physical processes st...
A coupling between a 3-D mesoscale hydrodynamic model and a biogeochemical model was performed in th...
A 3D advection-diffusion-reaction model is proposed to investigate the abundance of phytoplankton in...