Sea ice is a fundamental component of the climate system and plays a key role in polar trophic food webs. Nonetheless sea ice biogeochemical dynamics at large temporal and spatial scales are still rarely described. Numerical models may potentially contribute integrating among sparse observations, but available models of sea ice biogeochemistry are still scarce, whether their relevance for properly describing the current and future state of the polar oceans has been recently addressed. A general methodology to develop a sea ice biogeochemical model is presented, deriving it from an existing validated model application by extension of generic pelagic biogeochemistry model parameterizations. The described methodology is flexible and considers ...
In the Arctic Ocean, both phytoplankton and sea ice algae are important contributors to the primary ...
A coupled 1-D sea ice-ocean physical-biogeochemical model was developed to investigate the processes...
A coupled 1-D sea ice-ocean physical-biogeochemical model was developed to investigate the processes...
Sea ice is a fundamental component of the climate system and plays a key role in polar trophic food ...
<div><p>Sea ice is a fundamental component of the climate system and plays a key role in polar troph...
The last decades have seen a large effort of the scientific community to study and understand the ph...
Abstract Numerical models can be a powerful tool helping to understand the role biogeochemical proce...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades ...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades justifyi...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades justifyi...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades ...
Numerical models can be a powerful tool helping to understand the role biogeochemical processes play...
The seasonal dynamics of pelagic and sea ice communities are closely related in ice-covered waters, ...
The seasonal dynamics of pelagic and sea ice communities are closely related in ice-covered waters, ...
Large changes in the state and seasonality of sea ice are expected for this century in...
In the Arctic Ocean, both phytoplankton and sea ice algae are important contributors to the primary ...
A coupled 1-D sea ice-ocean physical-biogeochemical model was developed to investigate the processes...
A coupled 1-D sea ice-ocean physical-biogeochemical model was developed to investigate the processes...
Sea ice is a fundamental component of the climate system and plays a key role in polar trophic food ...
<div><p>Sea ice is a fundamental component of the climate system and plays a key role in polar troph...
The last decades have seen a large effort of the scientific community to study and understand the ph...
Abstract Numerical models can be a powerful tool helping to understand the role biogeochemical proce...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades ...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades justifyi...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades justifyi...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades ...
Numerical models can be a powerful tool helping to understand the role biogeochemical processes play...
The seasonal dynamics of pelagic and sea ice communities are closely related in ice-covered waters, ...
The seasonal dynamics of pelagic and sea ice communities are closely related in ice-covered waters, ...
Large changes in the state and seasonality of sea ice are expected for this century in...
In the Arctic Ocean, both phytoplankton and sea ice algae are important contributors to the primary ...
A coupled 1-D sea ice-ocean physical-biogeochemical model was developed to investigate the processes...
A coupled 1-D sea ice-ocean physical-biogeochemical model was developed to investigate the processes...