Decadal-scale thermohaline variability in the Atlantic sector of the Southern Ocean

International audience An enhanced Altimetry Gravest Empirical Mode (AGEM), including both adiabatic and diabatic trends, is developed for the Antarctic Circumpolar Current (ACC) south of Africa using updated hydrographic CTD sections, Argo data, and satellite altimetry. This AGEM has improved accur...

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Bibliographic Details
Published in:Journal of Geophysical Research: Oceans
Main Authors: Hutchinson, K., Swart, S., Meijers, A., Ansorge, I., Speich, S.
Other Authors: Laboratoire de Météorologie Dynamique (UMR 8539) (LMD), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut national des sciences de l'Univers (INSU - CNRS)-École polytechnique (X)-École des Ponts ParisTech (ENPC)-Centre National de la Recherche Scientifique (CNRS)-Département des Géosciences - ENS Paris, École normale supérieure - Paris (ENS-PSL), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-École normale supérieure - Paris (ENS-PSL), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)
Format: Article in Journal/Newspaper
Language:English
Published: HAL CCSD 2016
Subjects:
ACC
Online Access:https://insu.hal.science/insu-03727111
https://insu.hal.science/insu-03727111/document
https://insu.hal.science/insu-03727111/file/JGR%20Oceans%20-%202016%20-%20Hutchinson%20-%20Decadal%25u2010scale%20thermohaline%20variability%20in%20the%20Atlantic%20sector%20of%20the%20Southern%20Ocean.pdf
https://doi.org/10.1002/2015JC011491
Description
Summary:International audience An enhanced Altimetry Gravest Empirical Mode (AGEM), including both adiabatic and diabatic trends, is developed for the Antarctic Circumpolar Current (ACC) south of Africa using updated hydrographic CTD sections, Argo data, and satellite altimetry. This AGEM has improved accuracy compared to traditional climatologies and other proxy methods. The AGEM for the Atlantic Southern Ocean offers an ideal technique to investigate the thermohaline variability over the past two decades in a key region for water mass exchanges and transformation. In order to assess and attribute changes in the hydrography of the region, we separate the changes into adiabatic and diabatic components. Integrated over the upper 2000 dbar of the ACC south of Africa, results show mean adiabatic changes of 0.16 ± 0.11°C decade −1 and 0.006 ± 0.014 decade −1 , and diabatic differences of −0.044 ± 0.13°C decade −1 and −0.01 ± 0.017 decade −1 for temperature and salinity, respectively. The trends of the resultant AGEM, that include both adiabatic and diabatic variability (termed AD-AGEM), show a significant increase in the heat content of the upper 2000 dbar of the ACC with a mean warming of 0.12 ± 0.087°C decade −1 . This study focuses on the Antarctic Intermediate Water (AAIW) mass where negative diabatic trends dominate positive adiabatic differences in the Subantarctic Zone (SAZ), with results indicating a cooling (−0.17°C decade −1 ) and freshening (−0.032 decade −1 ) of AAIW in this area, whereas south of the SAZ positive adiabatic and diabatic trends together create a cumulative warming (0.31°C decade −1 ) and salinification (0.014 decade −1 ) of AAIW.