We use an ocean circulation, biogeochemistry, and ecosystem model to explore the interactions between ocean circulation, macro- and micro-nutrient supply to the euphotic layer, and biological productivity. The model suggests a tight coupling between the degree of iron limitation in the upwelling subpolar and tropical oceans and the productivity of the adjacent subtropical gyres. This coupling is facilitated by lateral Ekman transfer of macro-nutrients in the surface ocean. We describe a coarse resolution configuration of the MIT ocean circulation and biogeochemistry model in which there are fully prognostic representations of the oceanic cycles of phosphorus, iron, and silicon. The pelagic ecosystem is represented using two functional group...
The primary nutrients that limit marine phytoplankton growth rates include nitrogen (N), phosphorus ...
International audienceA new mixed layer multi-nutrient ecosystem model, incorporating diatoms, non-d...
International audienceA new mixed layer multi-nutrient ecosystem model, incorporating diatoms, non-d...
A global three-dimensional marine ecosystem model with several key phytoplankton functional groups, ...
A global 3D marine ecosystem model with several key phytoplankton functional groups, multiple limiti...
[1] We formulate a mechanistic model of the coupled oceanic iron and phosphorus cycles. The iron par...
[1] We describe a model of the ocean transport and biogeochemical cycling of iron and the subsequent...
[1] We describe a model of the ocean transport and biogeochemical cycling of iron and the subsequent...
A global marine ecosystem mixed-layer model is used to study iron cycling and nutrient-limitation pa...
A global 3-D marine ecosystem model with several key phytoplankton functional groups, multiple limit...
The ocean’s biological pump is crucial for the carbon balance of the climate system, and the control...
Observations have shown that large areas of the world ocean are characterized by lower than expected...
Observations have shown that large areas of the world ocean are characterized by lower than expected...
The primary nutrients that limit marine phytoplankton growth rates include nitrogen (N), phosphorus ...
The primary nutrients that limit marine phytoplankton growth rates include nitrogen (N), phosphorus ...
The primary nutrients that limit marine phytoplankton growth rates include nitrogen (N), phosphorus ...
International audienceA new mixed layer multi-nutrient ecosystem model, incorporating diatoms, non-d...
International audienceA new mixed layer multi-nutrient ecosystem model, incorporating diatoms, non-d...
A global three-dimensional marine ecosystem model with several key phytoplankton functional groups, ...
A global 3D marine ecosystem model with several key phytoplankton functional groups, multiple limiti...
[1] We formulate a mechanistic model of the coupled oceanic iron and phosphorus cycles. The iron par...
[1] We describe a model of the ocean transport and biogeochemical cycling of iron and the subsequent...
[1] We describe a model of the ocean transport and biogeochemical cycling of iron and the subsequent...
A global marine ecosystem mixed-layer model is used to study iron cycling and nutrient-limitation pa...
A global 3-D marine ecosystem model with several key phytoplankton functional groups, multiple limit...
The ocean’s biological pump is crucial for the carbon balance of the climate system, and the control...
Observations have shown that large areas of the world ocean are characterized by lower than expected...
Observations have shown that large areas of the world ocean are characterized by lower than expected...
The primary nutrients that limit marine phytoplankton growth rates include nitrogen (N), phosphorus ...
The primary nutrients that limit marine phytoplankton growth rates include nitrogen (N), phosphorus ...
The primary nutrients that limit marine phytoplankton growth rates include nitrogen (N), phosphorus ...
International audienceA new mixed layer multi-nutrient ecosystem model, incorporating diatoms, non-d...
International audienceA new mixed layer multi-nutrient ecosystem model, incorporating diatoms, non-d...