The effectiveness of ocean-colour data assimilation in providing robust biological-parameter estimates for basin-scale ecosystem models is investigated for a phytoplankton-zooplankton-nutrient model using North Atlantic satellite chlorophyll data. The model is forced by annual cycles of mixed-layer depth, day length, photosynthetically available radiation and a temperature-dependent phytoplankton maximum growth rate.Although ocean-colour data are potentially limited in their ability to constrain model parameters because they provide information about the phytoplankton component only, this limitation is offset by the volume of data available covering the range of possible biogeochemical responses to similar and widely varying physical condit...
Ocean color remote sensing of chlorophyll concentration has revolutionized our understanding of the ...
International audienceThe global ocean biogeochemical models that are used in order to assess the oc...
Over the past decade, techniques have been presented to derive the community structure of phytoplank...
The e¬ectiveness of ocean-colour data assimilation in providing robust biological-parameter estimate...
A means of assimilating simulated satellite ocean color data with a coupled physical-biological mode...
A means of assimilating simulated satellite ocean color data with a coupled physical-biological mode...
Over the past decade, techniques have been presented to derive the community structure of phytoplank...
A dynamic size-structured model is developed for phytoplankton and nutrients in the oceanic mixed la...
As part of the GlobColour project, daily chlorophyll <i>a</i> observations, derived usin...
Copernicus marine environment monitoring service (CMEMS) gives users access to a wide range of ocean...
Phytoplankton functional-type (PFT) data are assimilated into the global coupled ocean-ecosystem mod...
Ocean color remote sensing of chlorophyll concentration has revolutionized our understanding of the ...
International audienceThe global ocean biogeochemical models that are used in order to assess the oc...
Over the past decade, techniques have been presented to derive the community structure of phytoplank...
The e¬ectiveness of ocean-colour data assimilation in providing robust biological-parameter estimate...
A means of assimilating simulated satellite ocean color data with a coupled physical-biological mode...
A means of assimilating simulated satellite ocean color data with a coupled physical-biological mode...
Over the past decade, techniques have been presented to derive the community structure of phytoplank...
A dynamic size-structured model is developed for phytoplankton and nutrients in the oceanic mixed la...
As part of the GlobColour project, daily chlorophyll <i>a</i> observations, derived usin...
Copernicus marine environment monitoring service (CMEMS) gives users access to a wide range of ocean...
Phytoplankton functional-type (PFT) data are assimilated into the global coupled ocean-ecosystem mod...
Ocean color remote sensing of chlorophyll concentration has revolutionized our understanding of the ...
International audienceThe global ocean biogeochemical models that are used in order to assess the oc...
Over the past decade, techniques have been presented to derive the community structure of phytoplank...