Abstract Oceanic eddy-induced meridional heat transport (EHT) is an important process in the Southern Ocean heat budget, the variability of which significantly modulates global meridional overturning circulation (MOC) and Antarctic sea-ice extent. Although it is recognized that mesoscale eddies with scales of ~40–300 km greatly contribute to the EHT, the role of submesoscale eddies with scales of ~1–40 km remains unclear. Here, using two state-of-the-art high-resolution simulations (resolutions of 1/48° and 1/24°), we find that submesoscale eddies significantly enhance the total poleward EHT in the Southern Ocean with an enhancement percentage reaching 19–48% in the Antarctic Circumpolar Current band. By comparing the eddy energy budgets be...
The Southern Ocean is riddled with mesoscale eddies. Although just a few km in size, these loops and...
Anthropogenic influences have led to a strengthening and poleward shift of westerly winds over the S...
In the sea ice-impacted Southern Ocean, the spring melt of sea ice modifies the upper ocean. These m...
The ocean is the largest solar energy collector on Earth. The amount of heat it can store is modulat...
Interactions between eddies and mean flow are essential to close the momentum budget of the Southern...
The Southern Ocean (SO) transports heat towards Antarctica and plays an important role in determinin...
The role of eddies in modulating the Southern Ocean response to the southern annular mode (SAM) is e...
Mesoscale eddies are ubiquitous in the Southern Ocean particularly in regions where the Antarctic Ci...
Mesoscale eddies are ubiquitous features in the Southern Ocean, yet their phenomenology is not well ...
The role of eddies in modulating the Southern Ocean response to the southern annular mode (SAM) is e...
The role of eddies in modulating the Southern Ocean response to the southern annular mode (SAM) is e...
The authors assess the role of time-dependent eddy variability in the Antarctic Circumpolar Current ...
International audienceWe investigate statistical properties of surface currents as well as coherent ...
The Antarctic Circumpolar Current (ACC) is the dominant feature of the Southern Ocean and is an int...
The Southern Ocean is riddled with mesoscale eddies. Although just a few km in size, these loops and...
Anthropogenic influences have led to a strengthening and poleward shift of westerly winds over the S...
In the sea ice-impacted Southern Ocean, the spring melt of sea ice modifies the upper ocean. These m...
The ocean is the largest solar energy collector on Earth. The amount of heat it can store is modulat...
Interactions between eddies and mean flow are essential to close the momentum budget of the Southern...
The Southern Ocean (SO) transports heat towards Antarctica and plays an important role in determinin...
The role of eddies in modulating the Southern Ocean response to the southern annular mode (SAM) is e...
Mesoscale eddies are ubiquitous in the Southern Ocean particularly in regions where the Antarctic Ci...
Mesoscale eddies are ubiquitous features in the Southern Ocean, yet their phenomenology is not well ...
The role of eddies in modulating the Southern Ocean response to the southern annular mode (SAM) is e...
The role of eddies in modulating the Southern Ocean response to the southern annular mode (SAM) is e...
The authors assess the role of time-dependent eddy variability in the Antarctic Circumpolar Current ...
International audienceWe investigate statistical properties of surface currents as well as coherent ...
The Antarctic Circumpolar Current (ACC) is the dominant feature of the Southern Ocean and is an int...
The Southern Ocean is riddled with mesoscale eddies. Although just a few km in size, these loops and...
Anthropogenic influences have led to a strengthening and poleward shift of westerly winds over the S...
In the sea ice-impacted Southern Ocean, the spring melt of sea ice modifies the upper ocean. These m...