AbstractWe use ensemble runs of a three layer, quasi‐geostrophic idealized Southern Ocean model to explore the roles of forced and intrinsic variability in response to a linear increase of wind stress imposed over a 30 year period. We find no increase of eastward circumpolar volume transport in response to the increased wind stress. A large part of the resulting time series can be explained by a response in which the eddy kinetic energy is linearly proportional to the wind stress with a possible time lag, but no statistically significant lag is found. However, this simple relationship is not the whole story: several intrinsic time scales also influence the response. We find an e‐folding time scale for growth of small perturbations of 1–2 we...
Circulation in the Southern Ocean is unique. The strong wind stress forcing and buoyancy fluxes, in ...
This study addresses the energetics of the Southern Ocean, in response to high-frequency wind forcin...
The Southern Ocean (SO) surface wind stress is a major atmospheric forcing for driving the Antarctic...
AbstractWe use ensemble runs of a three layer, quasi‐geostrophic idealized Southern Ocean model to e...
We use ensemble runs of a three-layer, quasigeostrophic idealized Southern Ocean model to explore th...
The influence of changing the mean wind stress felt by the ocean through alteration of the variabili...
The response of eddy kinetic energy (EKE) to the strengthening of Southern Hemisphere winds occurrin...
The influence of changing the mean wind stress felt by the ocean through alteration of the variabili...
We assess the role of time-dependent eddy variability in the Antarctic Circumpolar Current (ACC) in ...
International audienceInterannual variations in Southern Ocean eddy kinetic energy (EKE) are investi...
Eddies in the Southern Ocean act to moderate the response of the Antarctic Circumpolar Current (ACC)...
This study addresses the energetics of the Southern Ocean, in response to high-frequency wind forcin...
Eddies in the Southern Ocean act to moderate the response of the Antarctic Circumpolar Current (ACC)...
Eddies in the Southern Ocean act to moderate the response of the Antarctic Circumpolar Current (ACC)...
The Southern Ocean (SO) surface westerly wind stress plays a fundamental role in driving the Antarct...
Circulation in the Southern Ocean is unique. The strong wind stress forcing and buoyancy fluxes, in ...
This study addresses the energetics of the Southern Ocean, in response to high-frequency wind forcin...
The Southern Ocean (SO) surface wind stress is a major atmospheric forcing for driving the Antarctic...
AbstractWe use ensemble runs of a three layer, quasi‐geostrophic idealized Southern Ocean model to e...
We use ensemble runs of a three-layer, quasigeostrophic idealized Southern Ocean model to explore th...
The influence of changing the mean wind stress felt by the ocean through alteration of the variabili...
The response of eddy kinetic energy (EKE) to the strengthening of Southern Hemisphere winds occurrin...
The influence of changing the mean wind stress felt by the ocean through alteration of the variabili...
We assess the role of time-dependent eddy variability in the Antarctic Circumpolar Current (ACC) in ...
International audienceInterannual variations in Southern Ocean eddy kinetic energy (EKE) are investi...
Eddies in the Southern Ocean act to moderate the response of the Antarctic Circumpolar Current (ACC)...
This study addresses the energetics of the Southern Ocean, in response to high-frequency wind forcin...
Eddies in the Southern Ocean act to moderate the response of the Antarctic Circumpolar Current (ACC)...
Eddies in the Southern Ocean act to moderate the response of the Antarctic Circumpolar Current (ACC)...
The Southern Ocean (SO) surface westerly wind stress plays a fundamental role in driving the Antarct...
Circulation in the Southern Ocean is unique. The strong wind stress forcing and buoyancy fluxes, in ...
This study addresses the energetics of the Southern Ocean, in response to high-frequency wind forcin...
The Southern Ocean (SO) surface wind stress is a major atmospheric forcing for driving the Antarctic...