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DOI10.1029/2019JD030618
Polar Cyclones at the Origin of the Reoccurrence of the Maud Rise Polynya in Austral Winter 2017
Francis, Diana1; Eayrs, Clare1; Cuesta, Juan2,3; Holland, David1,4
2019-05-27
发表期刊JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES
ISSN2169-897X
EISSN2169-8996
出版年2019
卷号124期号:10页码:5251-5267
文章类型Article
语种英语
国家U Arab Emirates; France; USA
英文摘要

This study examines the role of atmospheric forcings in the occurrence of open-ocean polynyas by investigating the case of the austral winter 2017's polynya located in the Lazarev Sea sector to the east of the Weddell Sea, known as the Maud Rise polynya or the Weddell Polynya. The ice-free zone appeared in mid-September 2017 and grew to as large as 80,000 km(2) by the end of October 2017 before merging with the open ocean after the sea ice started to retreat at the beginning of the austral summer. Using a combination of satellite observations and reanalysis data at high spatiotemporal resolution, we found that severe cyclones, occurring over the ice pack, have a deterministic role in creating strong divergence in the sea ice field through strong cyclonic surface winds leading to the opening of the polynya. The occurrence of intense and frequent cyclones over the ice pack during austral winter 2017 was unusual, and it occurred under an enhanced strong positive meridional transport of heat flux and moisture toward Antarctica associated with an amplification of the atmospheric zonal wave 3 and a strong positive Southern Annular Mode index. We found that the opening of the polynya was not primarily due to direct ice melt by thermodynamic effects but rather to strong dynamical forcing by the winds on the sea ice, as in the case of coastal polynyas. Indeed, the meridional transport of heat toward Antarctica occurred over the Weddell Sea sector (i.e., to the east of the Lazarev Sea sector where the polynya is located) whereas the Lazarev Sea sector was under the influence of equatorward transport of cold air masses at that time. Our results show that the supply of warm and moist air coming from the west side of the South Atlantic Ocean into the Weddell Sea significantly increased the potential for cyclone formation as measured by the Eady growth rate leading to intense and frequent cyclogenesis over the ice pack, far south from the ice edge. After cyclogenesis in the Weddell Sea, these cyclones intensified as they moved eastward spinning over the Lazarev Sea with intensity comparable to category 11violent stormsin the Beaufort scale. The cyclonic winds generated sea ice divergence by pushing the ice away from the cyclone center: To the east, north of it and to the west, south of it, which led to the reoccurrence of the Maud Rise polynya in mid-September 2017.


英文关键词Antarctica storms cyclones polynya sea ice cyclonic winds
领域气候变化
收录类别SCI-E
WOS记录号WOS:000471237200007
WOS关键词ANTARCTIC SEA-ICE ; SOUTHERN-HEMISPHERE ; WEDDELL SEA ; ATMOSPHERIC CIRCULATION ; GLOBAL CLIMATOLOGY ; TRENDS ; CYCLOGENESIS ; MECHANISMS ; CONVECTION ; BEHAVIOR
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
被引频次:39[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/183340
专题气候变化
作者单位1.New York Univ Abu Dhabi, Res Inst, Ctr Global Sea Level Change, Abu Dhabi, U Arab Emirates;
2.CNRS, Lab Interuniv Syst Atmospher, Paris, France;
3.Univ Paris Est Creteil Val Marne, Paris, France;
4.NYU, Courant Inst Math Sci, Ctr Atmosphere Ocean Sci, New York, NY USA
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Francis, Diana,Eayrs, Clare,Cuesta, Juan,et al. Polar Cyclones at the Origin of the Reoccurrence of the Maud Rise Polynya in Austral Winter 2017[J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,2019,124(10):5251-5267.
APA Francis, Diana,Eayrs, Clare,Cuesta, Juan,&Holland, David.(2019).Polar Cyclones at the Origin of the Reoccurrence of the Maud Rise Polynya in Austral Winter 2017.JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES,124(10),5251-5267.
MLA Francis, Diana,et al."Polar Cyclones at the Origin of the Reoccurrence of the Maud Rise Polynya in Austral Winter 2017".JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES 124.10(2019):5251-5267.
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