Both observations and high resolution numerical models show that the Southern Ocean circumpolar flow is concentrated in a large number (approximately 8 to 12) of narrow filamentary jets. It is shown here that coherent jets exhibit a range of low frequency variability, on timescales of months to years, that can lead to displacement and to intermittent formation and dissipation of jets. Using output from an eddy-resolving ocean general circulation model in local regions near topographic features, the impact of energy exchange between eddy and mean flow components on jet persistence and variability is examined. A novel approach that uses a time-dependent definition of the mean flow provides a clearer picture of eddy-mean flow interactions in r...
The Southern Ocean is riddled with mesoscale eddies. Although just a few km in size, these loops and...
The Antarctic Circumpolar Current (ACC) is a complex current system composed of multiple jets that i...
Circulation in the Southern Ocean is unique. The strong wind stress forcing and buoyancy fluxes, in ...
Both observations and high resolution numerical models show that the Southern Ocean circumpolar flow...
Satellite altimetry and high-resolution ocean models indicate that the Southern Ocean comprises an i...
The Southern Ocean, which lies south of approximately 35 degrees S and completely encircles the Anta...
The Southern Ocean’s Antarctic Circumpolar Current (ACC) naturally lends itself to interpretations u...
Author Posting. © American Geophysical Union, 2011. This article is posted here by permission of Am...
[1] There is an ongoing debate concerning the distribution of eddy stirring across the Antarctic Cir...
There is an ongoing debate concerning the distribution of eddy stirring across the Antarctic Circump...
The interaction of jets with topography in the Southern Ocean is investigated using 19 years of alti...
The interaction of jets with topography in the Southern Ocean is investigated using 19 years of alti...
The surface waters of the Southern Ocean act as a control valve through which climatically important...
The surface waters of the Southern Ocean act as a control valve through which climatically important...
The surface waters of the Southern Ocean act as a control valve through which climatically important...
The Southern Ocean is riddled with mesoscale eddies. Although just a few km in size, these loops and...
The Antarctic Circumpolar Current (ACC) is a complex current system composed of multiple jets that i...
Circulation in the Southern Ocean is unique. The strong wind stress forcing and buoyancy fluxes, in ...
Both observations and high resolution numerical models show that the Southern Ocean circumpolar flow...
Satellite altimetry and high-resolution ocean models indicate that the Southern Ocean comprises an i...
The Southern Ocean, which lies south of approximately 35 degrees S and completely encircles the Anta...
The Southern Ocean’s Antarctic Circumpolar Current (ACC) naturally lends itself to interpretations u...
Author Posting. © American Geophysical Union, 2011. This article is posted here by permission of Am...
[1] There is an ongoing debate concerning the distribution of eddy stirring across the Antarctic Cir...
There is an ongoing debate concerning the distribution of eddy stirring across the Antarctic Circump...
The interaction of jets with topography in the Southern Ocean is investigated using 19 years of alti...
The interaction of jets with topography in the Southern Ocean is investigated using 19 years of alti...
The surface waters of the Southern Ocean act as a control valve through which climatically important...
The surface waters of the Southern Ocean act as a control valve through which climatically important...
The surface waters of the Southern Ocean act as a control valve through which climatically important...
The Southern Ocean is riddled with mesoscale eddies. Although just a few km in size, these loops and...
The Antarctic Circumpolar Current (ACC) is a complex current system composed of multiple jets that i...
Circulation in the Southern Ocean is unique. The strong wind stress forcing and buoyancy fluxes, in ...