Differences between 1999 and 2010 across the Falkland Plateau : fronts and water masses
Differences between 1999 and 2010 across the Falkland Plateau : fronts and water masses
Date
2017-07-07
Authors
Perez-Hernandez, M. Dolores
Hernández-Guerra, Alonso
Comas-Rodríguez, Isis
Benítez-Barrios, Verónica M.
Fraile-Nuez, Eugenio
Pelegrí, Josep
Naveira Garabato, Alberto C.
Hernández-Guerra, Alonso
Comas-Rodríguez, Isis
Benítez-Barrios, Verónica M.
Fraile-Nuez, Eugenio
Pelegrí, Josep
Naveira Garabato, Alberto C.
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10.5194/os-13-577-2017
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Abstract
Decadal differences in the Falkland Plateau are studied from the two full-depth hydrographic data collected during the ALBATROSS (April 1999) and MOC-Austral (February 2010) cruises. Differences in the upper 100 dbar are due to changes in the seasonal thermocline, as the ALBATROSS cruise took place in the austral fall and the MOC-Austral cruise in summer. The intermediate water masses seem to be very sensitive to the wind conditions existing in their formation area, showing cooling and freshening for the decade as a consequence of a higher Antarctic Intermediate Water (AAIW) contribution and of a decrease in the Subantarctic Mode Water (SAMW) stratum. The deeper layers do not exhibit any significant change in the water mass properties. The Subantarctic Front (SAF) in 1999 is observed at 52.2–54.8° W with a relative mass transport of 32.6 Sv. In contrast, the SAF gets wider in 2010, stretching from 51.1 to 57.2° W (the Falkland Islands), and weakening to 17.9 Sv. Changes in the SAF can be linked with the westerly winds and mainly affect the northward flow of Subantarctic Surface Water (SASW), SAMW and AAIW/Antarctic Surface Water (AASW). The Polar Front (PF) carries 24.9 Sv in 1999 (49.8–44.4° W), while in 2010 (49.9–49.2° W) it narrows and strengthens to 37.3 Sv.
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© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Ocean Science 13 (2017): 577-587, doi:10.5194/os-13-577-2017.
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Ocean Science 13 (2017): 577-587