Location and dynamics of the Antarctic Polar Front from satellite sea surface temperature data

The location of the Antarctic Polar Front (PF) was mapped over a 7-year period (1987-1993) within images of satellite-deprived sea surface temperature. The mean path of the PF is strongly steered by the topographic features of the Southern Ocean. The topography places vorticity constraints on the dy...

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Main Authors: Moore, J. Keith, Abbott, Mark R., Richman, James G.
Format: Article in Journal/Newspaper
Language:English
unknown
Published: American Geophysical Union
Subjects:
Online Access:https://ir.library.oregonstate.edu/concern/articles/2v23w0571
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spelling ftoregonstate:ir.library.oregonstate.edu:2v23w0571 2024-09-15T17:44:20+00:00 Location and dynamics of the Antarctic Polar Front from satellite sea surface temperature data Moore, J. Keith Abbott, Mark R. Richman, James G. https://ir.library.oregonstate.edu/concern/articles/2v23w0571 English [eng] eng unknown American Geophysical Union https://ir.library.oregonstate.edu/concern/articles/2v23w0571 Copyright Not Evaluated Article ftoregonstate 2024-07-22T18:06:03Z The location of the Antarctic Polar Front (PF) was mapped over a 7-year period (1987-1993) within images of satellite-deprived sea surface temperature. The mean path of the PF is strongly steered by the topographic features of the Southern Ocean. The topography places vorticity constraints on the dynamics of the PF that strongly affect spatial and temporal variability. Over the deep ocean basins the surface expression of the PF is weakened, and the PF meanders over a wide latitudinal range. Near large topographic features, width and temperature change across the front increase, and large-scale meandering is inhibited. Elevated mesoscale variability is seen within and downstream of these areas and may be the result of baroclinic instabilities initiated where the PF encounters large topographic features. The strong correlations between topography and PF dynamics can be understood in the context of the planetary potential vorticity (PPV of flH) field. Mean PPV at the PF varies by more than a factor of 2 along its circumpolar path. However, at the mesoscale the PF remains within a relativity narrow range of PPV values around the local mean. Away from large topographic features, the PF returns to a preferred PPV value of ~25 x 10¯⁹m¯¹s¯¹ despite large latitudinal shifts. The mean paths of the surface and subsurface expressions of the PF are closely coupled over much of the Southern Ocean. Article in Journal/Newspaper Antarc* Antarctic Southern Ocean ScholarsArchive@OSU (Oregon State University)
institution Open Polar
collection ScholarsArchive@OSU (Oregon State University)
op_collection_id ftoregonstate
language English
unknown
description The location of the Antarctic Polar Front (PF) was mapped over a 7-year period (1987-1993) within images of satellite-deprived sea surface temperature. The mean path of the PF is strongly steered by the topographic features of the Southern Ocean. The topography places vorticity constraints on the dynamics of the PF that strongly affect spatial and temporal variability. Over the deep ocean basins the surface expression of the PF is weakened, and the PF meanders over a wide latitudinal range. Near large topographic features, width and temperature change across the front increase, and large-scale meandering is inhibited. Elevated mesoscale variability is seen within and downstream of these areas and may be the result of baroclinic instabilities initiated where the PF encounters large topographic features. The strong correlations between topography and PF dynamics can be understood in the context of the planetary potential vorticity (PPV of flH) field. Mean PPV at the PF varies by more than a factor of 2 along its circumpolar path. However, at the mesoscale the PF remains within a relativity narrow range of PPV values around the local mean. Away from large topographic features, the PF returns to a preferred PPV value of ~25 x 10¯⁹m¯¹s¯¹ despite large latitudinal shifts. The mean paths of the surface and subsurface expressions of the PF are closely coupled over much of the Southern Ocean.
format Article in Journal/Newspaper
author Moore, J. Keith
Abbott, Mark R.
Richman, James G.
spellingShingle Moore, J. Keith
Abbott, Mark R.
Richman, James G.
Location and dynamics of the Antarctic Polar Front from satellite sea surface temperature data
author_facet Moore, J. Keith
Abbott, Mark R.
Richman, James G.
author_sort Moore, J. Keith
title Location and dynamics of the Antarctic Polar Front from satellite sea surface temperature data
title_short Location and dynamics of the Antarctic Polar Front from satellite sea surface temperature data
title_full Location and dynamics of the Antarctic Polar Front from satellite sea surface temperature data
title_fullStr Location and dynamics of the Antarctic Polar Front from satellite sea surface temperature data
title_full_unstemmed Location and dynamics of the Antarctic Polar Front from satellite sea surface temperature data
title_sort location and dynamics of the antarctic polar front from satellite sea surface temperature data
publisher American Geophysical Union
url https://ir.library.oregonstate.edu/concern/articles/2v23w0571
genre Antarc*
Antarctic
Southern Ocean
genre_facet Antarc*
Antarctic
Southern Ocean
op_relation https://ir.library.oregonstate.edu/concern/articles/2v23w0571
op_rights Copyright Not Evaluated
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