This study investigates the coupling of physical and biological processes in the Northern Adriatic Sea through use of a dynamic mass balance approach derived from an interdisciplinary model of hydrodynamics and water quality. Emphasis is placed on modelling the role of nutrient inputs from the Po River and the response of phytoplankton concentrations and distributions, and basin-wide nutrient fluxes. The effects of riverine inflows, seasonal stratification and meteorological forcing were assessed with a dynamically coupled 3D hydrodynamic (ELCOM) and ecological (CAEDYM) model after validation with in situ field and remote sensing data. Model simulation results and mass balance calculations indicate a close coupling of physical and biologica...
A mechanistic explanation for the accumulation of dissolved organic carbon (DOC), observed in coasta...
International audienceLand forcing (water discharge and nutrient loads) is reported as one of the ma...
Dynamics of the physical and biogeochemical properties in a temperate coastal area in the north-west...
A biomass-based ecological model is presented here for the Adriatic Sea. The hydrodynami-cal part is...
In this paper we show results from numerical simulations carried out with a complex biogeochemical...
A three-dimensional coupled biogeochemical-circulation numerical model was implemented in the Adriat...
A trophic network static model of the Northern Adriatic sea (Italy, Slovenia, Croatia) was developed...
An integrated numerical model for the simulation of both pelagic and benthic biogeochemical processe...
The source apportionment of the annual nutrient load carried by the Po river to the Adriatic sea has...
Influenced by one of the largest Mediterranean rivers, Po, the northern Adriatic (NA) production is ...
The nutrient emission model MONERIS (MOdelling Nutrient Emissions into River Systems) is applied to ...
A mechanistic explanation for the accumulation of dissolved organic carbon (DOC), observed in coasta...
The nutrient emission model MONERIS (MOdelling Nutrient Emissions into River Systems) is applied to ...
A mechanistic explanation for the accumulation of dissolved organic carbon (DOC), observed in coasta...
International audienceLand forcing (water discharge and nutrient loads) is reported as one of the ma...
Dynamics of the physical and biogeochemical properties in a temperate coastal area in the north-west...
A biomass-based ecological model is presented here for the Adriatic Sea. The hydrodynami-cal part is...
In this paper we show results from numerical simulations carried out with a complex biogeochemical...
A three-dimensional coupled biogeochemical-circulation numerical model was implemented in the Adriat...
A trophic network static model of the Northern Adriatic sea (Italy, Slovenia, Croatia) was developed...
An integrated numerical model for the simulation of both pelagic and benthic biogeochemical processe...
The source apportionment of the annual nutrient load carried by the Po river to the Adriatic sea has...
Influenced by one of the largest Mediterranean rivers, Po, the northern Adriatic (NA) production is ...
The nutrient emission model MONERIS (MOdelling Nutrient Emissions into River Systems) is applied to ...
A mechanistic explanation for the accumulation of dissolved organic carbon (DOC), observed in coasta...
The nutrient emission model MONERIS (MOdelling Nutrient Emissions into River Systems) is applied to ...
A mechanistic explanation for the accumulation of dissolved organic carbon (DOC), observed in coasta...
International audienceLand forcing (water discharge and nutrient loads) is reported as one of the ma...
Dynamics of the physical and biogeochemical properties in a temperate coastal area in the north-west...