Warming asymmetry in climate change simulations
Abstract. Climate change simulations made with coupled global climate models typically show a marked hemispheric asymmetry with more warming in the northern high lati-tudes than in the south. This asymmetry is ascribed to heat uptake by the ocean at high southern latitudes. A re-cent version of the...
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ftciteseerx:oai:CiteSeerX.psu:10.1.1.559.5196 2023-05-15T18:18:25+02:00 Warming asymmetry in climate change simulations G. M. Flato G. J. Boer The Pennsylvania State University CiteSeerX Archives 2001 application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.559.5196 http://www.cccma.ec.gc.ca/papers/gboer/PDF/CGCM2.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.559.5196 http://www.cccma.ec.gc.ca/papers/gboer/PDF/CGCM2.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://www.cccma.ec.gc.ca/papers/gboer/PDF/CGCM2.pdf text 2001 ftciteseerx 2016-01-08T11:56:16Z Abstract. Climate change simulations made with coupled global climate models typically show a marked hemispheric asymmetry with more warming in the northern high lati-tudes than in the south. This asymmetry is ascribed to heat uptake by the ocean at high southern latitudes. A re-cent version of the CCCma climate model exhibits a much more symmetric warming, compared to an earlier version, and agrees somewhat better with observed 20th century trends. This is associated with an improved parameteri-zation of ocean mixing which results in a decrease in heat penetration into the Southern Ocean, in accord with earlier ocean-only and simple coupled model investigations. The global average warming and the net penetration of heat into the global ocean (and hence its thermal expansion) are es-sentially unchanged. Observed trends in sea-ice extent over the past two decades exhibit hemispheric asymmetry with a statistically signicant decrease in northern but not in southern ice cover. Both model versions are consistent with these observations implying that observed ice extent is not yet an indicator of asymmetry in future global warming. Taken together, these results suggest that southern hemi-sphere climate warming at a rate comparable to that in the northern hemisphere should be considered a realistic possi-blity. 1. Text Sea ice Southern Ocean Unknown Southern Ocean |
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English |
description |
Abstract. Climate change simulations made with coupled global climate models typically show a marked hemispheric asymmetry with more warming in the northern high lati-tudes than in the south. This asymmetry is ascribed to heat uptake by the ocean at high southern latitudes. A re-cent version of the CCCma climate model exhibits a much more symmetric warming, compared to an earlier version, and agrees somewhat better with observed 20th century trends. This is associated with an improved parameteri-zation of ocean mixing which results in a decrease in heat penetration into the Southern Ocean, in accord with earlier ocean-only and simple coupled model investigations. The global average warming and the net penetration of heat into the global ocean (and hence its thermal expansion) are es-sentially unchanged. Observed trends in sea-ice extent over the past two decades exhibit hemispheric asymmetry with a statistically signicant decrease in northern but not in southern ice cover. Both model versions are consistent with these observations implying that observed ice extent is not yet an indicator of asymmetry in future global warming. Taken together, these results suggest that southern hemi-sphere climate warming at a rate comparable to that in the northern hemisphere should be considered a realistic possi-blity. 1. |
author2 |
The Pennsylvania State University CiteSeerX Archives |
format |
Text |
author |
G. M. Flato G. J. Boer |
spellingShingle |
G. M. Flato G. J. Boer Warming asymmetry in climate change simulations |
author_facet |
G. M. Flato G. J. Boer |
author_sort |
G. M. Flato |
title |
Warming asymmetry in climate change simulations |
title_short |
Warming asymmetry in climate change simulations |
title_full |
Warming asymmetry in climate change simulations |
title_fullStr |
Warming asymmetry in climate change simulations |
title_full_unstemmed |
Warming asymmetry in climate change simulations |
title_sort |
warming asymmetry in climate change simulations |
publishDate |
2001 |
url |
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.559.5196 http://www.cccma.ec.gc.ca/papers/gboer/PDF/CGCM2.pdf |
geographic |
Southern Ocean |
geographic_facet |
Southern Ocean |
genre |
Sea ice Southern Ocean |
genre_facet |
Sea ice Southern Ocean |
op_source |
http://www.cccma.ec.gc.ca/papers/gboer/PDF/CGCM2.pdf |
op_relation |
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.559.5196 http://www.cccma.ec.gc.ca/papers/gboer/PDF/CGCM2.pdf |
op_rights |
Metadata may be used without restrictions as long as the oai identifier remains attached to it. |
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1766194991472836608 |