Winter sea ice export from the Laptev Sea preconditions the local summer sea ice cover and fast ice decay

Ice retreat in the eastern Eurasian Arctic is a consequence of atmospheric and oceanic processes and regional feedback mechanisms acting on the ice cover, both in winter and summer. A correct representation of these processes in numerical models is important, since it will improve predictions of sea...

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Bibliographic Details
Published in:The Cryosphere
Main Authors: P. Itkin, T. Krumpen
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2017
Subjects:
geo
Online Access:https://doi.org/10.5194/tc-11-2383-2017
https://www.the-cryosphere.net/11/2383/2017/tc-11-2383-2017.pdf
https://doaj.org/article/cf9fa8fafc054bdfafa37092a16d9c68
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spelling fttriple:oai:gotriple.eu:oai:doaj.org/article:cf9fa8fafc054bdfafa37092a16d9c68 2023-05-15T14:58:46+02:00 Winter sea ice export from the Laptev Sea preconditions the local summer sea ice cover and fast ice decay P. Itkin T. Krumpen 2017-10-01 https://doi.org/10.5194/tc-11-2383-2017 https://www.the-cryosphere.net/11/2383/2017/tc-11-2383-2017.pdf https://doaj.org/article/cf9fa8fafc054bdfafa37092a16d9c68 en eng Copernicus Publications doi:10.5194/tc-11-2383-2017 1994-0416 1994-0424 https://www.the-cryosphere.net/11/2383/2017/tc-11-2383-2017.pdf https://doaj.org/article/cf9fa8fafc054bdfafa37092a16d9c68 undefined The Cryosphere, Vol 11, Pp 2383-2391 (2017) geo envir Journal Article https://vocabularies.coar-repositories.org/resource_types/c_6501/ 2017 fttriple https://doi.org/10.5194/tc-11-2383-2017 2023-01-22T17:53:01Z Ice retreat in the eastern Eurasian Arctic is a consequence of atmospheric and oceanic processes and regional feedback mechanisms acting on the ice cover, both in winter and summer. A correct representation of these processes in numerical models is important, since it will improve predictions of sea ice anomalies along the Northeast Passage and beyond. In this study, we highlight the importance of winter ice dynamics for local summer sea ice anomalies in thickness, volume and extent. By means of airborne sea ice thickness surveys made over pack ice areas in the south-eastern Laptev Sea, we show that years of offshore-directed sea ice transport have a thinning effect on the late-winter sea ice cover. To confirm the preconditioning effect of enhanced offshore advection in late winter on the summer sea ice cover, we perform a sensitivity study using a numerical model. Results verify that the preconditioning effect plays a bigger role for the regional ice extent. Furthermore, they indicate an increase in volume export from the Laptev Sea as a consequence of enhanced offshore advection, which has far-reaching consequences for the entire Arctic sea ice mass balance. Moreover we show that ice dynamics in winter not only preconditions local summer ice extent, but also accelerate fast-ice decay. Article in Journal/Newspaper Arctic laptev Laptev Sea Northeast Passage Sea ice The Cryosphere Unknown Arctic Laptev Sea The Cryosphere 11 5 2383 2391
institution Open Polar
collection Unknown
op_collection_id fttriple
language English
topic geo
envir
spellingShingle geo
envir
P. Itkin
T. Krumpen
Winter sea ice export from the Laptev Sea preconditions the local summer sea ice cover and fast ice decay
topic_facet geo
envir
description Ice retreat in the eastern Eurasian Arctic is a consequence of atmospheric and oceanic processes and regional feedback mechanisms acting on the ice cover, both in winter and summer. A correct representation of these processes in numerical models is important, since it will improve predictions of sea ice anomalies along the Northeast Passage and beyond. In this study, we highlight the importance of winter ice dynamics for local summer sea ice anomalies in thickness, volume and extent. By means of airborne sea ice thickness surveys made over pack ice areas in the south-eastern Laptev Sea, we show that years of offshore-directed sea ice transport have a thinning effect on the late-winter sea ice cover. To confirm the preconditioning effect of enhanced offshore advection in late winter on the summer sea ice cover, we perform a sensitivity study using a numerical model. Results verify that the preconditioning effect plays a bigger role for the regional ice extent. Furthermore, they indicate an increase in volume export from the Laptev Sea as a consequence of enhanced offshore advection, which has far-reaching consequences for the entire Arctic sea ice mass balance. Moreover we show that ice dynamics in winter not only preconditions local summer ice extent, but also accelerate fast-ice decay.
format Article in Journal/Newspaper
author P. Itkin
T. Krumpen
author_facet P. Itkin
T. Krumpen
author_sort P. Itkin
title Winter sea ice export from the Laptev Sea preconditions the local summer sea ice cover and fast ice decay
title_short Winter sea ice export from the Laptev Sea preconditions the local summer sea ice cover and fast ice decay
title_full Winter sea ice export from the Laptev Sea preconditions the local summer sea ice cover and fast ice decay
title_fullStr Winter sea ice export from the Laptev Sea preconditions the local summer sea ice cover and fast ice decay
title_full_unstemmed Winter sea ice export from the Laptev Sea preconditions the local summer sea ice cover and fast ice decay
title_sort winter sea ice export from the laptev sea preconditions the local summer sea ice cover and fast ice decay
publisher Copernicus Publications
publishDate 2017
url https://doi.org/10.5194/tc-11-2383-2017
https://www.the-cryosphere.net/11/2383/2017/tc-11-2383-2017.pdf
https://doaj.org/article/cf9fa8fafc054bdfafa37092a16d9c68
geographic Arctic
Laptev Sea
geographic_facet Arctic
Laptev Sea
genre Arctic
laptev
Laptev Sea
Northeast Passage
Sea ice
The Cryosphere
genre_facet Arctic
laptev
Laptev Sea
Northeast Passage
Sea ice
The Cryosphere
op_source The Cryosphere, Vol 11, Pp 2383-2391 (2017)
op_relation doi:10.5194/tc-11-2383-2017
1994-0416
1994-0424
https://www.the-cryosphere.net/11/2383/2017/tc-11-2383-2017.pdf
https://doaj.org/article/cf9fa8fafc054bdfafa37092a16d9c68
op_rights undefined
op_doi https://doi.org/10.5194/tc-11-2383-2017
container_title The Cryosphere
container_volume 11
container_issue 5
container_start_page 2383
op_container_end_page 2391
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