Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades justifying the development of models to forecast sea ice physics and biogeochemistry. The main goal of this study is to evaluate the performance of the Los Alamos Sea Ice Model (CICE) to simulate physical and biogeochemical properties at time scales of a few weeks and to use the model to analyze ice algal bloom dynamics in different types of ice. Ocean and atmospheric forcing data and observations of the evolution of the sea ice properties collected from 18 April to 4 June 2015, during the Norwegian young sea ICE expedition, were used to test the CICE model. Our results show the following: ...
In the Arctic Ocean, both phytoplankton and sea ice algae are important contributors to the primary ...
Different sea ice models apply unique approaches in the computation of nutrient diffusion between th...
Abstract. Different sea ice models apply unique approaches in the computation of nutrient diffusion ...
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 justifyi...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades ...
Sea ice is a fundamental component of the climate system and plays a key role in polar trophic food ...
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 seasonal dynamics of pelagic and sea ice communities are closely related in ice-covered waters, ...
Ice algae are an important component of the carbon cycle in the Arctic. We investigate the dynamics ...
The seasonal dynamics of pelagic and sea ice communities are closely related in ice-covered waters, ...
Ice algae are an important component of the carbon cycle in the Arctic. We investigate the dynamics ...
In the Arctic Ocean, both phytoplankton and sea ice algae are important contributors to the primary ...
Different sea ice models apply unique approaches in the computation of nutrient diffusion between th...
Abstract. Different sea ice models apply unique approaches in the computation of nutrient diffusion ...
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 justifyi...
Large changes in the sea ice regime of the Arctic Ocean have occurred over the last decades ...
Sea ice is a fundamental component of the climate system and plays a key role in polar trophic food ...
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 seasonal dynamics of pelagic and sea ice communities are closely related in ice-covered waters, ...
Ice algae are an important component of the carbon cycle in the Arctic. We investigate the dynamics ...
The seasonal dynamics of pelagic and sea ice communities are closely related in ice-covered waters, ...
Ice algae are an important component of the carbon cycle in the Arctic. We investigate the dynamics ...
In the Arctic Ocean, both phytoplankton and sea ice algae are important contributors to the primary ...
Different sea ice models apply unique approaches in the computation of nutrient diffusion between th...
Abstract. Different sea ice models apply unique approaches in the computation of nutrient diffusion ...