The RADARSAT Geophysical Processor System (RGPS) has produced a wealth of data on Arctic sea ice motion, deformation, and thickness with broad geographical coverage and good temporal resolution. These data provide unprecedented spatial detail of the structure and evolution of the sea ice cover. The broad purpose of this study was to take advantage of the strengths of the RGPS data set to investigate sea ice kinematics and thickness, which affect the climate through their influence on ice production, ridging, and transport (i.e. mass balance); heat flux to the atmosphere; and structure of the upper ocean mixed layer. The objectives of this study were to: (1) Explain the relationship between the discontinuous motion of the ice cover and the l...
As the sea-ice modeling community is shifting to advanced numerical frameworks, developing new sea-...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
Sea ice area and thickness have been on the decline in the Arctic over the past several decades. Und...
As the sea-ice modeling community is shifting to advanced numerical frameworks, developing new sea-i...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
The Arctic is highly sensitive to changes in the global climate. One of the most prominent examples ...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
Simulating sea-ice drift and deformation in the Arctic Ocean is still a challenge because of the mul...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
The sea-ice modelling community progresses towards Pan-Arctic simulations that explicitly resolve le...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
As the sea-ice modeling community is shifting to advanced numerical frameworks, developing new sea-...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
Sea ice area and thickness have been on the decline in the Arctic over the past several decades. Und...
As the sea-ice modeling community is shifting to advanced numerical frameworks, developing new sea-i...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
The Arctic is highly sensitive to changes in the global climate. One of the most prominent examples ...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
Simulating sea-ice drift and deformation in the Arctic Ocean is still a challenge because of the mul...
Leads and pressure ridges are dominant features of the Arctic sea ice cover. Not only do they affect...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
The sea-ice modelling community progresses towards Pan-Arctic simulations that explicitly resolve le...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
As the sea-ice modeling community is shifting to advanced numerical frameworks, developing new sea-...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...
International audienceAs the sea-ice modeling community is shifting to advanced numerical frameworks...