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Atmospheric controls on the Terra Nova Bay polynya occurrence in Antarctica

Ricardo Fonseca; Diana Francis; Giuseppe Aulicino; Kyle S. Mattingly; Giannetta Fusco; Giorgio Budillon
Climate Dynamics · Vol. 61, Issue 11-12 · pp. 5147-5169 · 2023

Abstract

Polynyas, or ice-free regions within the sea ice pack, are a common occurrence around Antarctica. A recurrent and often large polynya is the Terra Nova Bay Polynya (TNBP), located on the western side of the Ross Sea just off Victoria Land. In this study, we investigate the atmospheric conditions leading to the occurrence of the TNBP and its spatial variability, as estimated using satellite-derived ice surface temperature and sea ice concentration data. A cluster analysis revealed that katabatic winds descending the Transantarctic Mountains, account for about 45% of the days when the TNBP exceeded its 2010–2017 mean extent plus one standard deviation. Warmer and more moist air intrusions from lower-latitudes from the Pacific Ocean, which are favoured in the negative phase of the Southern Annular Mode, play a role in its expansion in the remaining days. This is more frequent in the transition seasons, when such events are more likely to reach Antarctica and contribute to the occurrence and the widening of the polynya. In-situ weather data confirmed the effects of the mid-latitude air intrusions, while sea ice drifts of up to 25 km day −1 cleared the ice offshore and promoted the widening of the polynya starting from the coastal areas. Knowing the atmospheric factors involved in the occurrence of coastal polynyas around Antarctica is essential as it helps in improving their representation and predictability in climate models and hence advance the models’ capabilities in projecting Antarctic sea ice variability.

Bibliographic Information

JournalClimate Dynamics
PublisherSpringer
Publication Date2023-12-01
Publication Year2023
Volume61
Issue11-12
Pages5147-5169
Document TypeJournal Article
Print ISSN0930-7575
eISSN1432-0894
DOI10.1007/s00382-023-06845-0

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NARA Access Coverage1986-01-01~Current
Journal Homepagehttps://www.springer.com/journal/382
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