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Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean

A large retreat of sea-ice in the ‘stormy’ Atlantic Sector of the Arctic Ocean has become evident through a series of record minima for the winter maximum sea-ice extent since 2015. Results from the Norwegian young sea ICE (N-ICE2015) expedition, a five-month-long (Jan-Jun) drifting ice station in f...

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Autores principales: Graham, Robert M., Itkin, Polona, Meyer, Amelie, Sundfjord, Arild, Spreen, Gunnar, Smedsrud, Lars H., Liston, Glen E., Cheng, Bin, Cohen, Lana, Divine, Dmitry, Fer, Ilker, Fransson, Agneta, Gerland, Sebastian, Haapala, Jari, Hudson, Stephen R., Johansson, A. Malin, King, Jennifer, Merkouriadi, Ioanna, Peterson, Algot K., Provost, Christine, Randelhoff, Achim, Rinke, Annette, Rösel, Anja, Sennéchael, Nathalie, Walden, Von P., Duarte, Pedro, Assmy, Philipp, Steen, Harald, Granskog, Mats A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6592951/
https://www.ncbi.nlm.nih.gov/pubmed/31239470
http://dx.doi.org/10.1038/s41598-019-45574-5
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author Graham, Robert M.
Itkin, Polona
Meyer, Amelie
Sundfjord, Arild
Spreen, Gunnar
Smedsrud, Lars H.
Liston, Glen E.
Cheng, Bin
Cohen, Lana
Divine, Dmitry
Fer, Ilker
Fransson, Agneta
Gerland, Sebastian
Haapala, Jari
Hudson, Stephen R.
Johansson, A. Malin
King, Jennifer
Merkouriadi, Ioanna
Peterson, Algot K.
Provost, Christine
Randelhoff, Achim
Rinke, Annette
Rösel, Anja
Sennéchael, Nathalie
Walden, Von P.
Duarte, Pedro
Assmy, Philipp
Steen, Harald
Granskog, Mats A.
author_facet Graham, Robert M.
Itkin, Polona
Meyer, Amelie
Sundfjord, Arild
Spreen, Gunnar
Smedsrud, Lars H.
Liston, Glen E.
Cheng, Bin
Cohen, Lana
Divine, Dmitry
Fer, Ilker
Fransson, Agneta
Gerland, Sebastian
Haapala, Jari
Hudson, Stephen R.
Johansson, A. Malin
King, Jennifer
Merkouriadi, Ioanna
Peterson, Algot K.
Provost, Christine
Randelhoff, Achim
Rinke, Annette
Rösel, Anja
Sennéchael, Nathalie
Walden, Von P.
Duarte, Pedro
Assmy, Philipp
Steen, Harald
Granskog, Mats A.
author_sort Graham, Robert M.
collection PubMed
description A large retreat of sea-ice in the ‘stormy’ Atlantic Sector of the Arctic Ocean has become evident through a series of record minima for the winter maximum sea-ice extent since 2015. Results from the Norwegian young sea ICE (N-ICE2015) expedition, a five-month-long (Jan-Jun) drifting ice station in first and second year pack-ice north of Svalbard, showcase how sea-ice in this region is frequently affected by passing winter storms. Here we synthesise the interdisciplinary N-ICE2015 dataset, including independent observations of the atmosphere, snow, sea-ice, ocean, and ecosystem. We build upon recent results and illustrate the different mechanisms through which winter storms impact the coupled Arctic sea-ice system. These short-lived and episodic synoptic-scale events transport pulses of heat and moisture into the Arctic, which temporarily reduce radiative cooling and henceforth ice growth. Cumulative snowfall from each sequential storm deepens the snow pack and insulates the sea-ice, further inhibiting ice growth throughout the remaining winter season. Strong winds fracture the ice cover, enhance ocean-ice-atmosphere heat fluxes, and make the ice more susceptible to lateral melt. In conclusion, the legacy of Arctic winter storms for sea-ice and the ice-associated ecosystem in the Atlantic Sector lasts far beyond their short lifespan.
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spelling pubmed-65929512019-07-03 Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean Graham, Robert M. Itkin, Polona Meyer, Amelie Sundfjord, Arild Spreen, Gunnar Smedsrud, Lars H. Liston, Glen E. Cheng, Bin Cohen, Lana Divine, Dmitry Fer, Ilker Fransson, Agneta Gerland, Sebastian Haapala, Jari Hudson, Stephen R. Johansson, A. Malin King, Jennifer Merkouriadi, Ioanna Peterson, Algot K. Provost, Christine Randelhoff, Achim Rinke, Annette Rösel, Anja Sennéchael, Nathalie Walden, Von P. Duarte, Pedro Assmy, Philipp Steen, Harald Granskog, Mats A. Sci Rep Article A large retreat of sea-ice in the ‘stormy’ Atlantic Sector of the Arctic Ocean has become evident through a series of record minima for the winter maximum sea-ice extent since 2015. Results from the Norwegian young sea ICE (N-ICE2015) expedition, a five-month-long (Jan-Jun) drifting ice station in first and second year pack-ice north of Svalbard, showcase how sea-ice in this region is frequently affected by passing winter storms. Here we synthesise the interdisciplinary N-ICE2015 dataset, including independent observations of the atmosphere, snow, sea-ice, ocean, and ecosystem. We build upon recent results and illustrate the different mechanisms through which winter storms impact the coupled Arctic sea-ice system. These short-lived and episodic synoptic-scale events transport pulses of heat and moisture into the Arctic, which temporarily reduce radiative cooling and henceforth ice growth. Cumulative snowfall from each sequential storm deepens the snow pack and insulates the sea-ice, further inhibiting ice growth throughout the remaining winter season. Strong winds fracture the ice cover, enhance ocean-ice-atmosphere heat fluxes, and make the ice more susceptible to lateral melt. In conclusion, the legacy of Arctic winter storms for sea-ice and the ice-associated ecosystem in the Atlantic Sector lasts far beyond their short lifespan. Nature Publishing Group UK 2019-06-25 /pmc/articles/PMC6592951/ /pubmed/31239470 http://dx.doi.org/10.1038/s41598-019-45574-5 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Graham, Robert M.
Itkin, Polona
Meyer, Amelie
Sundfjord, Arild
Spreen, Gunnar
Smedsrud, Lars H.
Liston, Glen E.
Cheng, Bin
Cohen, Lana
Divine, Dmitry
Fer, Ilker
Fransson, Agneta
Gerland, Sebastian
Haapala, Jari
Hudson, Stephen R.
Johansson, A. Malin
King, Jennifer
Merkouriadi, Ioanna
Peterson, Algot K.
Provost, Christine
Randelhoff, Achim
Rinke, Annette
Rösel, Anja
Sennéchael, Nathalie
Walden, Von P.
Duarte, Pedro
Assmy, Philipp
Steen, Harald
Granskog, Mats A.
Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean
title Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean
title_full Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean
title_fullStr Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean
title_full_unstemmed Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean
title_short Winter storms accelerate the demise of sea ice in the Atlantic sector of the Arctic Ocean
title_sort winter storms accelerate the demise of sea ice in the atlantic sector of the arctic ocean
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6592951/
https://www.ncbi.nlm.nih.gov/pubmed/31239470
http://dx.doi.org/10.1038/s41598-019-45574-5
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