Global and hemispheric climate variations affecting the Southern Ocean
The hemispheric and regional atmospheric circulation influences the Southern Ocean in many and profound ways, including intense air-sea fluxes of momentum, energy, fresh water and dissolved gases. The Southern Ocean ventilates a large fraction of the world ocean and hence these influences are spread...
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Cambridge University Press
2004
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ftnerc:oai:nora.nerc.ac.uk:12421 2023-05-15T13:45:11+02:00 Global and hemispheric climate variations affecting the Southern Ocean Simmonds, Ian King, John C. 2004 http://nora.nerc.ac.uk/id/eprint/12421/ http://journals.cambridge.org/download.php?file=%2FANS%2FANS16_04%2FS0954102004002226a.pdf&code=015e9597882c99aaff41ae708a1ef5e1 unknown Cambridge University Press Simmonds, Ian; King, John C. orcid:0000-0003-3315-7568 . 2004 Global and hemispheric climate variations affecting the Southern Ocean. Antarctic Science, 16 (4). 401-413. https://doi.org/10.1017/S0954102004002226 <https://doi.org/10.1017/S0954102004002226> Marine Sciences Meteorology and Climatology Earth Sciences Atmospheric Sciences Publication - Article PeerReviewed 2004 ftnerc https://doi.org/10.1017/S0954102004002226 2023-02-04T19:28:00Z The hemispheric and regional atmospheric circulation influences the Southern Ocean in many and profound ways, including intense air-sea fluxes of momentum, energy, fresh water and dissolved gases. The Southern Ocean ventilates a large fraction of the world ocean and hence these influences are spread globally. We use the NCEP-2 reanalysis data set to diagnose aspects of the large-scale atmospheric structure and variability and explore how these impact on the Southern Ocean. We discuss how the 'Southern Annular Mode' and the 'Pacific-South American' pattern influence the Southern Ocean, particularly in the eastern Pacific. We review the importance of atmospheric eddies in Southern Ocean climate, and the role they play in the transport of mechanical energy into the ocean. The fluxes of fresh water across the air-sea boundary influence strongly the processes of water mass formation. It is shown that climatological precipitation exceeds evaporation over most of the Southern Ocean. When averaged over the ocean from 50degreesS to the Antarctic coast the annual mean excess is 0.80 mm day(-1). The magnitude of the flux displays only a small measure of seasonality, and its largest value of 0.92 mm day(-1) occurs in summer. Article in Journal/Newspaper Antarc* Antarctic Antarctic Science Southern Ocean Natural Environment Research Council: NERC Open Research Archive Antarctic Southern Ocean The Antarctic Pacific Antarctic Science 16 4 401 413 |
institution |
Open Polar |
collection |
Natural Environment Research Council: NERC Open Research Archive |
op_collection_id |
ftnerc |
language |
unknown |
topic |
Marine Sciences Meteorology and Climatology Earth Sciences Atmospheric Sciences |
spellingShingle |
Marine Sciences Meteorology and Climatology Earth Sciences Atmospheric Sciences Simmonds, Ian King, John C. Global and hemispheric climate variations affecting the Southern Ocean |
topic_facet |
Marine Sciences Meteorology and Climatology Earth Sciences Atmospheric Sciences |
description |
The hemispheric and regional atmospheric circulation influences the Southern Ocean in many and profound ways, including intense air-sea fluxes of momentum, energy, fresh water and dissolved gases. The Southern Ocean ventilates a large fraction of the world ocean and hence these influences are spread globally. We use the NCEP-2 reanalysis data set to diagnose aspects of the large-scale atmospheric structure and variability and explore how these impact on the Southern Ocean. We discuss how the 'Southern Annular Mode' and the 'Pacific-South American' pattern influence the Southern Ocean, particularly in the eastern Pacific. We review the importance of atmospheric eddies in Southern Ocean climate, and the role they play in the transport of mechanical energy into the ocean. The fluxes of fresh water across the air-sea boundary influence strongly the processes of water mass formation. It is shown that climatological precipitation exceeds evaporation over most of the Southern Ocean. When averaged over the ocean from 50degreesS to the Antarctic coast the annual mean excess is 0.80 mm day(-1). The magnitude of the flux displays only a small measure of seasonality, and its largest value of 0.92 mm day(-1) occurs in summer. |
format |
Article in Journal/Newspaper |
author |
Simmonds, Ian King, John C. |
author_facet |
Simmonds, Ian King, John C. |
author_sort |
Simmonds, Ian |
title |
Global and hemispheric climate variations affecting the Southern Ocean |
title_short |
Global and hemispheric climate variations affecting the Southern Ocean |
title_full |
Global and hemispheric climate variations affecting the Southern Ocean |
title_fullStr |
Global and hemispheric climate variations affecting the Southern Ocean |
title_full_unstemmed |
Global and hemispheric climate variations affecting the Southern Ocean |
title_sort |
global and hemispheric climate variations affecting the southern ocean |
publisher |
Cambridge University Press |
publishDate |
2004 |
url |
http://nora.nerc.ac.uk/id/eprint/12421/ http://journals.cambridge.org/download.php?file=%2FANS%2FANS16_04%2FS0954102004002226a.pdf&code=015e9597882c99aaff41ae708a1ef5e1 |
geographic |
Antarctic Southern Ocean The Antarctic Pacific |
geographic_facet |
Antarctic Southern Ocean The Antarctic Pacific |
genre |
Antarc* Antarctic Antarctic Science Southern Ocean |
genre_facet |
Antarc* Antarctic Antarctic Science Southern Ocean |
op_relation |
Simmonds, Ian; King, John C. orcid:0000-0003-3315-7568 . 2004 Global and hemispheric climate variations affecting the Southern Ocean. Antarctic Science, 16 (4). 401-413. https://doi.org/10.1017/S0954102004002226 <https://doi.org/10.1017/S0954102004002226> |
op_doi |
https://doi.org/10.1017/S0954102004002226 |
container_title |
Antarctic Science |
container_volume |
16 |
container_issue |
4 |
container_start_page |
401 |
op_container_end_page |
413 |
_version_ |
1766215087845015552 |