This study is aimed at the modelling of mesoscale processed such as up/downwelling and ice edge eddies in the marginal ice zones. A 2-dimensional coupled ice-ocean model is used for the study. The ice model is coupled to the reduced gravity ocean model (f-plane) through interfacial stresses. The constitutive equations of the sea ice are formulated on the basis of the Reiner-Rivlin theory. The internal ice stresses are important only at high ice concentrations (90-100%), otherwise the ice motion is essentially free drift, where the air-ice stress is balanced by the ice-water stress. The model was tested by studying the upwelling dynamics. Winds parallel to the ice edge with the ice on the right produce upwilling because the air-ice momentum ...
LONG-TERM GOALS: Detailed process studies of the MIZ are necessary to build accurate Arctic region i...
Abstract. Coupled general circulation models are be-coming more sophisticated, particularly with res...
Meltwater input from sea ice forms a buoyancy source for the upper ocean which creates a strong dens...
In the marginal ice zone, various characteristic mesoscale phenomena, such as upwelling, downwelling...
The effect of mesoscale eddies on the primary production in the Arctic MIZ is investigated numerical...
International audienceThe Arctic marginal ice zone (MIZ), where strong interactions between sea ice,...
The Arctic Marginal Ice Zone (MIZ), where strong interactions between sea ice, ocean and atmosphere ...
The ice-ocean response to variable winds is analysed based upon two types of models. An analytical i...
The marginal ice zone is a highly dynamical region where sea ice and ocean waves interact. Large-sca...
Signatures of ocean eddies, fronts, and filaments are commonly observed within marginal ice zones (M...
A coupled sea-ice–ocean numerical model is used to study the impact of an ill-resolved subgrid-scale...
high-frequency temporal variability (HFV) and meso-scale spatial variability (MSV) of winter sea-ice...
The region of sea ice near the edge of the sea ice pack is known as the marginal ice zone (MIZ), and...
LONG-TERM GOALS: Detailed process studies of the MIZ are necessary to build accurate Arctic region i...
Abstract. Coupled general circulation models are be-coming more sophisticated, particularly with res...
Meltwater input from sea ice forms a buoyancy source for the upper ocean which creates a strong dens...
In the marginal ice zone, various characteristic mesoscale phenomena, such as upwelling, downwelling...
The effect of mesoscale eddies on the primary production in the Arctic MIZ is investigated numerical...
International audienceThe Arctic marginal ice zone (MIZ), where strong interactions between sea ice,...
The Arctic Marginal Ice Zone (MIZ), where strong interactions between sea ice, ocean and atmosphere ...
The ice-ocean response to variable winds is analysed based upon two types of models. An analytical i...
The marginal ice zone is a highly dynamical region where sea ice and ocean waves interact. Large-sca...
Signatures of ocean eddies, fronts, and filaments are commonly observed within marginal ice zones (M...
A coupled sea-ice–ocean numerical model is used to study the impact of an ill-resolved subgrid-scale...
high-frequency temporal variability (HFV) and meso-scale spatial variability (MSV) of winter sea-ice...
The region of sea ice near the edge of the sea ice pack is known as the marginal ice zone (MIZ), and...
LONG-TERM GOALS: Detailed process studies of the MIZ are necessary to build accurate Arctic region i...
Abstract. Coupled general circulation models are be-coming more sophisticated, particularly with res...
Meltwater input from sea ice forms a buoyancy source for the upper ocean which creates a strong dens...