Projections of winter polynyas and their biophysical impacts in the Ross Sea Antarctica

This study investigates winter polynyas in the southern Ross Sea, Antarctica where several polynyas are known to form. Coastal polynyas are areas of lower sea ice concentration and/or thickness along the coast that are otherwise surrounded by more extensive, thicker sea ice pack. Polynyas are also l...

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Published in:Climate Dynamics
Other Authors: DuVivier, Alice K. (author), Molina, Maria J. (author), Deppenmeier, Anna-Lena (author), Holland, Marika M. (author), Landrum, Laura (author), Krumhardt, Kristen (author), Jenouvrier, Stephanie (author)
Format: Article in Journal/Newspaper
Language:English
Published: 2023
Subjects:
Online Access:https://doi.org/10.1007/s00382-023-06951-z
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spelling ftncar:oai:drupal-site.org:articles_26740 2024-06-23T07:46:04+00:00 Projections of winter polynyas and their biophysical impacts in the Ross Sea Antarctica DuVivier, Alice K. (author) Molina, Maria J. (author) Deppenmeier, Anna-Lena (author) Holland, Marika M. (author) Landrum, Laura (author) Krumhardt, Kristen (author) Jenouvrier, Stephanie (author) 2023-09-23 https://doi.org/10.1007/s00382-023-06951-z en eng Climate Dynamics--Clim Dyn--0930-7575--1432-0894 articles:26740 doi:10.1007/s00382-023-06951-z ark:/85065/d7xk8knz Copyright author(s). This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License. article Text 2023 ftncar https://doi.org/10.1007/s00382-023-06951-z 2024-05-27T14:15:41Z This study investigates winter polynyas in the southern Ross Sea, Antarctica where several polynyas are known to form. Coastal polynyas are areas of lower sea ice concentration and/or thickness along the coast that are otherwise surrounded by more extensive, thicker sea ice pack. Polynyas are also locations where organisms can exploit both the ice substrate and pelagic resources. Using a self organizing map algorithm, we identify polynya events in the Community Earth System Model Version 2 Large Ensemble (CESM2-LE). The neural network algorithm is able to identify polynya events without imposing an ice concentration or thickness threshold, as is often done when identifying polynyas. The CESM2-LE produces a wintertime polynya feature comparable in size and location to the Ross Sea polynya, and during polynya events there are large turbulent heat fluxes and export of sea ice from the Ross Sea. In the CESM2-LE polynya event frequency is projected to decrease sharply in the later twentyfirst century, leading to increasing sea ice concentrations and thicknesses in the region. The drivers of the polynya frequency decline are likely both large scale circulation changes and local atmosphere and ocean feedbacks. If declines in wintertime polynya frequency over the twentyfirst century do occur they may impact Antarctic Bottom Water formation and local net primary productivity. Thus, better understanding potential local and unexpected sea ice changes in the Ross Sea is important for both assessing climate system impacts and ecological impacts on the Ross Sea ecosystem, which is currently protected by an internationally recognized marine protected area. 1852977 1947282 2037531 80NSSC20K1289 80NSSC21K1132 DE-SC0022070 Article in Journal/Newspaper Antarc* Antarctic Antarctica ice pack Ross Sea Sea ice OpenSky (NCAR/UCAR - National Center for Atmospheric Research/University Corporation for Atmospheric Research) Antarctic Ross Sea Climate Dynamics
institution Open Polar
collection OpenSky (NCAR/UCAR - National Center for Atmospheric Research/University Corporation for Atmospheric Research)
op_collection_id ftncar
language English
description This study investigates winter polynyas in the southern Ross Sea, Antarctica where several polynyas are known to form. Coastal polynyas are areas of lower sea ice concentration and/or thickness along the coast that are otherwise surrounded by more extensive, thicker sea ice pack. Polynyas are also locations where organisms can exploit both the ice substrate and pelagic resources. Using a self organizing map algorithm, we identify polynya events in the Community Earth System Model Version 2 Large Ensemble (CESM2-LE). The neural network algorithm is able to identify polynya events without imposing an ice concentration or thickness threshold, as is often done when identifying polynyas. The CESM2-LE produces a wintertime polynya feature comparable in size and location to the Ross Sea polynya, and during polynya events there are large turbulent heat fluxes and export of sea ice from the Ross Sea. In the CESM2-LE polynya event frequency is projected to decrease sharply in the later twentyfirst century, leading to increasing sea ice concentrations and thicknesses in the region. The drivers of the polynya frequency decline are likely both large scale circulation changes and local atmosphere and ocean feedbacks. If declines in wintertime polynya frequency over the twentyfirst century do occur they may impact Antarctic Bottom Water formation and local net primary productivity. Thus, better understanding potential local and unexpected sea ice changes in the Ross Sea is important for both assessing climate system impacts and ecological impacts on the Ross Sea ecosystem, which is currently protected by an internationally recognized marine protected area. 1852977 1947282 2037531 80NSSC20K1289 80NSSC21K1132 DE-SC0022070
author2 DuVivier, Alice K. (author)
Molina, Maria J. (author)
Deppenmeier, Anna-Lena (author)
Holland, Marika M. (author)
Landrum, Laura (author)
Krumhardt, Kristen (author)
Jenouvrier, Stephanie (author)
format Article in Journal/Newspaper
title Projections of winter polynyas and their biophysical impacts in the Ross Sea Antarctica
spellingShingle Projections of winter polynyas and their biophysical impacts in the Ross Sea Antarctica
title_short Projections of winter polynyas and their biophysical impacts in the Ross Sea Antarctica
title_full Projections of winter polynyas and their biophysical impacts in the Ross Sea Antarctica
title_fullStr Projections of winter polynyas and their biophysical impacts in the Ross Sea Antarctica
title_full_unstemmed Projections of winter polynyas and their biophysical impacts in the Ross Sea Antarctica
title_sort projections of winter polynyas and their biophysical impacts in the ross sea antarctica
publishDate 2023
url https://doi.org/10.1007/s00382-023-06951-z
geographic Antarctic
Ross Sea
geographic_facet Antarctic
Ross Sea
genre Antarc*
Antarctic
Antarctica
ice pack
Ross Sea
Sea ice
genre_facet Antarc*
Antarctic
Antarctica
ice pack
Ross Sea
Sea ice
op_relation Climate Dynamics--Clim Dyn--0930-7575--1432-0894
articles:26740
doi:10.1007/s00382-023-06951-z
ark:/85065/d7xk8knz
op_rights Copyright author(s). This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
op_doi https://doi.org/10.1007/s00382-023-06951-z
container_title Climate Dynamics
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