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Southern ocean carbon and heat impact on climate

Southern ocean carbon and heat impact on climate
Southern ocean carbon and heat impact on climate
The Southern Ocean greatly contributes to the regulation of the global climate by controlling important heat and carbon exchanges between the atmosphere and the ocean. Rates of climate change on decadal timescales are therefore impacted by oceanic processes taking place in the Southern Ocean, yet too little is known about these processes. Limitations come both from the lack of observations in this extreme environment and its inherent sensitivity to intermittent processes at scales that are not well captured in current Earth system models. The Southern Ocean Carbon and Heat Impact on Climate programme was launched to address this knowledge gap, with the overall objective to understand and quantify variability of heat and carbon budgets in the Southern Ocean through an investigation of the key physical processes controlling exchanges between the atmosphere, ocean and sea ice using a combination of observational and modelling approaches. Here, we provide a brief overview of the programme, as well as a summary of some of the scientific progress achieved during its first half. Advances range from new evidence of the importance of specific processes in Southern Ocean ventilation rate (e.g. storm-induced turbulence, sea–ice meltwater fronts, wind-induced gyre circulation, dense shelf water formation and abyssal mixing) to refined descriptions of the physical changes currently ongoing in the Southern Ocean and of their link with global climate. This article is part of a discussion meeting issue ‘Heat and carbon uptake in the Southern Ocean: the state of the art and future priorities’.</jats:p>
1364-503X
Sallée, J.B.
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Dupin, C. Mosneron
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Naeck, K.
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Garabato, A.C. Naveira
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Nicholson, S-A
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Park, W.
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SO-CHIC consortium
Sallée, J.B.
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Abrahamsen, E.P.
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Allaigre, C.
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Auger, M.
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Ayres, H.
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Badhe, R.
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Brearley, J.A.
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Mohrmann, M.
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Naeck, K.
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Narayanan, A.
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Garabato, A.C. Naveira
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Novellino, A.
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Ödalen, M.
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Østerhus, S.
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Park, W.
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Rosenthal, Hanna S.
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Steiger, N.
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Sallée, J.B., Abrahamsen, E.P. and Allaigre, C. , SO-CHIC consortium (2023) Southern ocean carbon and heat impact on climate. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 381 (2249). (doi:10.1098/rsta.2022.0056).

Record type: Article

Abstract

The Southern Ocean greatly contributes to the regulation of the global climate by controlling important heat and carbon exchanges between the atmosphere and the ocean. Rates of climate change on decadal timescales are therefore impacted by oceanic processes taking place in the Southern Ocean, yet too little is known about these processes. Limitations come both from the lack of observations in this extreme environment and its inherent sensitivity to intermittent processes at scales that are not well captured in current Earth system models. The Southern Ocean Carbon and Heat Impact on Climate programme was launched to address this knowledge gap, with the overall objective to understand and quantify variability of heat and carbon budgets in the Southern Ocean through an investigation of the key physical processes controlling exchanges between the atmosphere, ocean and sea ice using a combination of observational and modelling approaches. Here, we provide a brief overview of the programme, as well as a summary of some of the scientific progress achieved during its first half. Advances range from new evidence of the importance of specific processes in Southern Ocean ventilation rate (e.g. storm-induced turbulence, sea–ice meltwater fronts, wind-induced gyre circulation, dense shelf water formation and abyssal mixing) to refined descriptions of the physical changes currently ongoing in the Southern Ocean and of their link with global climate. This article is part of a discussion meeting issue ‘Heat and carbon uptake in the Southern Ocean: the state of the art and future priorities’.</jats:p>

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Accepted/In Press date: 24 February 2023
e-pub ahead of print date: 8 May 2023
Published date: 26 June 2023

Identifiers

Local EPrints ID: 489880
URI: http://eprints.soton.ac.uk/id/eprint/489880
ISSN: 1364-503X
PURE UUID: be6d9217-4fc3-4026-8698-f553f2982b45
ORCID for A. Narayanan: ORCID iD orcid.org/0000-0002-8967-2211
ORCID for A.C. Naveira Garabato: ORCID iD orcid.org/0000-0001-6071-605X

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Date deposited: 07 May 2024 16:31
Last modified: 11 May 2024 02:11

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Contributors

Author: J.B. Sallée
Author: E.P. Abrahamsen
Author: C. Allaigre
Author: M. Auger
Author: H. Ayres
Author: R. Badhe
Author: J. Boutin
Author: J.A. Brearley
Author: C. de Lavergne
Author: A.M.M. ten Doeschate
Author: Elise Droste
Author: M.D. du Plessis
Author: D. Ferreira
Author: I.S. Giddy
Author: B. Gülk
Author: N. Gruber
Author: M. Hague
Author: M. Hoppema
Author: Simon Josey
Author: T. Kanzow
Author: M. Kimmritz
Author: M.R. Lindeman
Author: P.J. Llanillo
Author: N.S. Lucas
Author: G. Madec
Author: D.P. Marshall
Author: Andrew Meijers
Author: Michael Meredith
Author: M. Mohrmann
Author: P.M.S. Monteiro
Author: C. Mosneron Dupin
Author: K. Naeck
Author: A. Narayanan ORCID iD
Author: S-A Nicholson
Author: A. Novellino
Author: M. Ödalen
Author: S. Østerhus
Author: W. Park
Author: Ryan Patmore
Author: E. Piedagnel
Author: F. Roquet
Author: Hanna S. Rosenthal
Author: T. Roy
Author: R. Saurabh
Author: Y. Silvy
Author: T. Spira
Author: N. Steiger
Author: A.F. Styles
Corporate Author: SO-CHIC consortium

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