A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere

The winter extratropical cyclone activity in the Southern Hemisphere during the last one thousand years within a global climate simulation was analyzed by tracking cyclones, and then clustering them into ten clusters consecutively for each hundred years. There is very strong year-to-year variability...

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Published in:Climate Dynamics
Main Authors: Xia, L., Storch, H.v., Feser, F., Wu, J.
Format: Article in Journal/Newspaper
Language:English
Published: Springer 2016
Subjects:
Online Access:https://publications.hereon.de/id/33577
https://publications.hzg.de/id/33577
http://www.hzg.de/imperia/md/content/gkss/zentrale_einrichtungen/bibliothek/journals/2015/xia_33577.pdf
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spelling fthzgzmk:oai:publications.hereon.de:33577 2023-06-11T04:06:37+02:00 A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere Xia, L. Storch, H.v. Feser, F. Wu, J. 2016 https://publications.hereon.de/id/33577 https://publications.hzg.de/id/33577 http://www.hzg.de/imperia/md/content/gkss/zentrale_einrichtungen/bibliothek/journals/2015/xia_33577.pdf en eng Springer http://dx.doi.org/10.1007/s00382-015-2954-x urn:issn:0930-7575 https://publications.hereon.de/id/33577 https://publications.hzg.de/id/33577 http://www.hzg.de/imperia/md/content/gkss/zentrale_einrichtungen/bibliothek/journals/2015/xia_33577.pdf info:eu-repo/semantics/openAccess open_access oa_gruen issn:0930-7575 Xia, L.; Storch, H.v.; Feser, F.; Wu, J.: A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere. In: Climate Dynamics. Vol. 47 (2016) 7, 2121 - 2138. (DOI:10.1007/s00382-015-2954-x) info:eu-repo/classification/ddc/551 info:eu-repo/semantics/article Zeitschrift Artikel 2016 fthzgzmk https://doi.org/10.1007/s00382-015-2954-x 2023-05-28T23:24:12Z The winter extratropical cyclone activity in the Southern Hemisphere during the last one thousand years within a global climate simulation was analyzed by tracking cyclones, and then clustering them into ten clusters consecutively for each hundred years. There is very strong year-to-year variability for Southern Hemispheric winter extratropical cyclone numbers and larger variations on centennial time scale, more so than for its Northern Hemispherical counterparts. However, no obvious trend can be found. The mean tracks of clusters over the Southern Indian Ocean and near New Zealand shift poleward from the eleventh to the twentieth century while the clusters in the central Southern Pacific shift equatorward. Storm track clusters with largest deepening rates are found over the Southwestern Indian Ocean. In the twentieth century, rapidly deepening cyclones appear more often while long lifespan cyclones appear less frequently. The winter storm activity in the Southern Hemisphere is closely related to the Antarctic Oscillation. The cyclone frequency over the Indian Ocean and South Pacific Ocean can be associated with the Indian Ocean Dipole and El Nino-Southern Oscillation respectively. Article in Journal/Newspaper Antarc* Antarctic Hereon Publications (Helmholtz-Zentrum) Antarctic Indian New Zealand Pacific The Antarctic Climate Dynamics 47 7-8 2121 2138
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collection Hereon Publications (Helmholtz-Zentrum)
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language English
topic info:eu-repo/classification/ddc/551
spellingShingle info:eu-repo/classification/ddc/551
Xia, L.
Storch, H.v.
Feser, F.
Wu, J.
A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere
topic_facet info:eu-repo/classification/ddc/551
description The winter extratropical cyclone activity in the Southern Hemisphere during the last one thousand years within a global climate simulation was analyzed by tracking cyclones, and then clustering them into ten clusters consecutively for each hundred years. There is very strong year-to-year variability for Southern Hemispheric winter extratropical cyclone numbers and larger variations on centennial time scale, more so than for its Northern Hemispherical counterparts. However, no obvious trend can be found. The mean tracks of clusters over the Southern Indian Ocean and near New Zealand shift poleward from the eleventh to the twentieth century while the clusters in the central Southern Pacific shift equatorward. Storm track clusters with largest deepening rates are found over the Southwestern Indian Ocean. In the twentieth century, rapidly deepening cyclones appear more often while long lifespan cyclones appear less frequently. The winter storm activity in the Southern Hemisphere is closely related to the Antarctic Oscillation. The cyclone frequency over the Indian Ocean and South Pacific Ocean can be associated with the Indian Ocean Dipole and El Nino-Southern Oscillation respectively.
format Article in Journal/Newspaper
author Xia, L.
Storch, H.v.
Feser, F.
Wu, J.
author_facet Xia, L.
Storch, H.v.
Feser, F.
Wu, J.
author_sort Xia, L.
title A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere
title_short A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere
title_full A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere
title_fullStr A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere
title_full_unstemmed A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere
title_sort study of quasi-millennial extratropical winter cyclone activity over the southern hemisphere
publisher Springer
publishDate 2016
url https://publications.hereon.de/id/33577
https://publications.hzg.de/id/33577
http://www.hzg.de/imperia/md/content/gkss/zentrale_einrichtungen/bibliothek/journals/2015/xia_33577.pdf
geographic Antarctic
Indian
New Zealand
Pacific
The Antarctic
geographic_facet Antarctic
Indian
New Zealand
Pacific
The Antarctic
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Antarctic
genre_facet Antarc*
Antarctic
op_source issn:0930-7575
Xia, L.; Storch, H.v.; Feser, F.; Wu, J.: A study of quasi-millennial extratropical winter cyclone activity over the Southern Hemisphere. In: Climate Dynamics. Vol. 47 (2016) 7, 2121 - 2138. (DOI:10.1007/s00382-015-2954-x)
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http://www.hzg.de/imperia/md/content/gkss/zentrale_einrichtungen/bibliothek/journals/2015/xia_33577.pdf
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