On the extraordinary snow on the sea ice off East Antarctica in late winter, 2012

In late winter-early spring 2012, the second Sea Ice Physics and Ecosystems Experiment (SIPEX II) was conducted off Wilkes Land, East Antarctica, onboard R/V Aurora Australis. The sea-ice conditions were characterized by significantly thick first-year ice and snow, trapping the ship for about 10 day...

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Published inDeep-sea research. Part II, Topical studies in oceanography Vol. 131; pp. 53 - 67
Main Authors Toyota, Takenobu, Massom, Robert, Lecomte, Olivier, Nomura, Daiki, Heil, Petra, Tamura, Takeshi, Fraser, Alexander D.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.09.2016
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ISSN0967-0645
1879-0100
DOI10.1016/j.dsr2.2016.02.003

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Abstract In late winter-early spring 2012, the second Sea Ice Physics and Ecosystems Experiment (SIPEX II) was conducted off Wilkes Land, East Antarctica, onboard R/V Aurora Australis. The sea-ice conditions were characterized by significantly thick first-year ice and snow, trapping the ship for about 10 days in the near coastal region. The deep snow cover was particularly remarkable, in that its average value of 0.45m was almost three times that observed between 1992 and 2007 in the region. To reveal factors responsible, we used in situ observations and ERA-Interim reanalysis (1990–2012) to examine the relative contribution of the different components of the local-regional snow mass balance equation i.e., snow accumulation on sea ice, precipitation minus evaporation (P–E), and loss by (i) snow-ice formation and (ii) entering into leads due to drifting snow. Results show no evidence for significantly high P–E in the winter of 2012. Ice core analysis has shown that although the snow-ice layer was relatively thin, indicating less transformation from snow to snow-ice in 2012 as compared to measurements from 2007, the difference was not enough to explain the extraordinarily deep snow. Based on these results, we deduce that lower loss of snow into leads was probably responsible for the extraordinary snow in 2012. Statistical analysis and satellite images suggest that the reduction in loss of snow into leads is attributed to rough ice surface associated with active deformation processes and larger floe size due to sea-ice expansion. This highlights the importance of snow-sea ice interaction in determining the mean snow depth on Antarctic sea ice.
AbstractList In late winter-early spring 2012, the second Sea Ice Physics and Ecosystems Experiment (SIPEX II) was conducted off Wilkes Land, East Antarctica, onboard R/V Aurora Australis. The sea-ice conditions were characterized by significantly thick first-year ice and snow, trapping the ship for about 10 days in the near coastal region. The deep snow cover was particularly remarkable, in that its average value of 0.45m was almost three times that observed between 1992 and 2007 in the region. To reveal factors responsible, we used in situ observations and ERA-Interim reanalysis (1990-2012) to examine the relative contribution of the different components of the local-regional snow mass balance equation i.e., snow accumulation on sea ice, precipitation minus evaporation (P-E), and loss by (i) snow-ice formation and (ii) entering into leads due to drifting snow. Results show no evidence for significantly high P-E in the winter of 2012. Ice core analysis has shown that although the snow-ice layer was relatively thin, indicating less transformation from snow to snow-ice in 2012 as compared to measurements from 2007, the difference was not enough to explain the extraordinarily deep snow. Based on these results, we deduce that lower loss of snow into leads was probably responsible for the extraordinary snow in 2012. Statistical analysis and satellite images suggest that the reduction in loss of snow into leads is attributed to rough ice surface associated with active deformation processes and larger floe size due to sea-ice expansion. This highlights the importance of snow-sea ice interaction in determining the mean snow depth on Antarctic sea ice.
Author Fraser, Alexander D.
Nomura, Daiki
Massom, Robert
Heil, Petra
Toyota, Takenobu
Tamura, Takeshi
Lecomte, Olivier
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Keywords ERA-Interim
Snow-ice formation
Loss of snow into leads
Antarctic snow on sea ice
Snow accumulation around the Antarctic
Regional index term: East Antarctica
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  issue: C11
  year: 2000
  ident: 10.1016/j.dsr2.2016.02.003_bib29
  article-title: A one-dimensional percolation model of flooding and snow-ice formation on Antarctic sea ice
  publication-title: J. Geophys. Res.
  doi: 10.1029/2000JC900130
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Snippet In late winter-early spring 2012, the second Sea Ice Physics and Ecosystems Experiment (SIPEX II) was conducted off Wilkes Land, East Antarctica, onboard R/V...
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SubjectTerms Antarctic snow on sea ice
Antarctica
Deep sea
ERA-Interim
Loss of snow into leads
Marine
Mathematical analysis
Regional index term: East Antarctica
Satellite imagery
Sea ice
Snow
Snow accumulation around the Antarctic
Snow-ice formation
Transformations
Trapping
Title On the extraordinary snow on the sea ice off East Antarctica in late winter, 2012
URI https://dx.doi.org/10.1016/j.dsr2.2016.02.003
https://www.proquest.com/docview/1827907859
https://www.proquest.com/docview/1845832712
Volume 131
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