Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland

Nares Strait is one of three channels that connect the Arctic Ocean to Baffin Bay. Unique sea-ice conditions in the strait lead to the formation of landfast ice arches at its northern and southern ends. These ice arches regulate Arctic sea-ice and freshwater export through the strait and promote the...

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Published in:Marine Geology
Main Authors: Georgiadis, Eleanor, Giraudeau, Jacques, Jennings, Anne, Limoges, Audrey, Jackson, Rebecca, Ribeiro, Sofia, Massé, Guillaume
Format: Article in Journal/Newspaper
Language:English
Published: 2020
Subjects:
Online Access:https://curis.ku.dk/portal/da/publications/local-and-regional-controls-on-holocene-sea-ice-dynamics-and-oceanography-in-nares-strait-northwest-greenland(2250c63c-f76a-4412-9250-9818f09bff0b).html
https://doi.org/10.1016/j.margeo.2020.106115
http://www.scopus.com/inward/record.url?scp=85077808499&partnerID=8YFLogxK
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spelling ftcopenhagenunip:oai:pure.atira.dk:publications/2250c63c-f76a-4412-9250-9818f09bff0b 2023-11-05T03:39:07+01:00 Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland Georgiadis, Eleanor Giraudeau, Jacques Jennings, Anne Limoges, Audrey Jackson, Rebecca Ribeiro, Sofia Massé, Guillaume 2020-04 https://curis.ku.dk/portal/da/publications/local-and-regional-controls-on-holocene-sea-ice-dynamics-and-oceanography-in-nares-strait-northwest-greenland(2250c63c-f76a-4412-9250-9818f09bff0b).html https://doi.org/10.1016/j.margeo.2020.106115 http://www.scopus.com/inward/record.url?scp=85077808499&partnerID=8YFLogxK eng eng info:eu-repo/semantics/openAccess Georgiadis , E , Giraudeau , J , Jennings , A , Limoges , A , Jackson , R , Ribeiro , S & Massé , G 2020 , ' Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland ' , Marine Geology , vol. 422 , 106115 . https://doi.org/10.1016/j.margeo.2020.106115 Arctic Ocean and adjacent high latitudes Glacial sediments Micropaleontology (forams) Paleoceanography Sea-ice biomarkers article 2020 ftcopenhagenunip https://doi.org/10.1016/j.margeo.2020.106115 2023-10-11T23:03:02Z Nares Strait is one of three channels that connect the Arctic Ocean to Baffin Bay. Unique sea-ice conditions in the strait lead to the formation of landfast ice arches at its northern and southern ends. These ice arches regulate Arctic sea-ice and freshwater export through the strait and promote the opening of the North Water polynya. The present study addresses the paucity of pre-satellite records of environmental conditions in the Nares Strait area, and aims at reconstructing Holocene sea-ice conditions and ocean circulation in the strait. The investigation is based on a marine sediment core strategically retrieved from under the current ice arch in Kane Basin to the south of Nares Strait, and provides a continuous record spanning the past ca 9 kyrs. We use benthic foraminiferal assemblages and sea-ice biomarkers to infer changes in Holocene ocean circulation and sea-ice conditions in Kane Basin. The establishment of the modern ocean circulation in Kane Basin is related to ice sheet retreat and postglacial rebound, while changes in sea-ice cover concur with major shifts in the Arctic Oscillation (AO). Our results suggest that sea-ice cover in Kane Basin was highly variable between ca 9.0 and 8.3 cal. ka BP, before increasing, probably in link with the 8.2 cold event and the opening of Nares Strait. A short period of minimum sea-ice cover and maximum Atlantic bottom water influence occurred between ca 8.1 and 7.5 cal. ka BP, when Kane Basin was deeper than for the remaining of the Holocene. As atmospheric temperatures dropped, sea-ice cover intensified in Kane Basin between ca 7.5 and 5.5 cal. ka BP, but strong winds under prevailing positive-like AO conditions likely prevented the formation of ice arches in Nares Strait. During this time, our micropaleontological data show that Atlantic water was progressively excluded from Kane Basin by the postglacial isostatic rebound. Increasingly cooler atmospheric temperatures and a shift towards more negative phases of the AO may have promoted the establishment of ice ... Article in Journal/Newspaper Arctic Arctic Ocean Baffin Bay Baffin Bay Baffin Foraminifera* Greenland Ice Sheet Kane Basin Nares strait Sea ice University of Copenhagen: Research Marine Geology 422 106115
institution Open Polar
collection University of Copenhagen: Research
op_collection_id ftcopenhagenunip
language English
topic Arctic Ocean and adjacent high latitudes
Glacial sediments
Micropaleontology (forams)
Paleoceanography
Sea-ice biomarkers
spellingShingle Arctic Ocean and adjacent high latitudes
Glacial sediments
Micropaleontology (forams)
Paleoceanography
Sea-ice biomarkers
Georgiadis, Eleanor
Giraudeau, Jacques
Jennings, Anne
Limoges, Audrey
Jackson, Rebecca
Ribeiro, Sofia
Massé, Guillaume
Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland
topic_facet Arctic Ocean and adjacent high latitudes
Glacial sediments
Micropaleontology (forams)
Paleoceanography
Sea-ice biomarkers
description Nares Strait is one of three channels that connect the Arctic Ocean to Baffin Bay. Unique sea-ice conditions in the strait lead to the formation of landfast ice arches at its northern and southern ends. These ice arches regulate Arctic sea-ice and freshwater export through the strait and promote the opening of the North Water polynya. The present study addresses the paucity of pre-satellite records of environmental conditions in the Nares Strait area, and aims at reconstructing Holocene sea-ice conditions and ocean circulation in the strait. The investigation is based on a marine sediment core strategically retrieved from under the current ice arch in Kane Basin to the south of Nares Strait, and provides a continuous record spanning the past ca 9 kyrs. We use benthic foraminiferal assemblages and sea-ice biomarkers to infer changes in Holocene ocean circulation and sea-ice conditions in Kane Basin. The establishment of the modern ocean circulation in Kane Basin is related to ice sheet retreat and postglacial rebound, while changes in sea-ice cover concur with major shifts in the Arctic Oscillation (AO). Our results suggest that sea-ice cover in Kane Basin was highly variable between ca 9.0 and 8.3 cal. ka BP, before increasing, probably in link with the 8.2 cold event and the opening of Nares Strait. A short period of minimum sea-ice cover and maximum Atlantic bottom water influence occurred between ca 8.1 and 7.5 cal. ka BP, when Kane Basin was deeper than for the remaining of the Holocene. As atmospheric temperatures dropped, sea-ice cover intensified in Kane Basin between ca 7.5 and 5.5 cal. ka BP, but strong winds under prevailing positive-like AO conditions likely prevented the formation of ice arches in Nares Strait. During this time, our micropaleontological data show that Atlantic water was progressively excluded from Kane Basin by the postglacial isostatic rebound. Increasingly cooler atmospheric temperatures and a shift towards more negative phases of the AO may have promoted the establishment of ice ...
format Article in Journal/Newspaper
author Georgiadis, Eleanor
Giraudeau, Jacques
Jennings, Anne
Limoges, Audrey
Jackson, Rebecca
Ribeiro, Sofia
Massé, Guillaume
author_facet Georgiadis, Eleanor
Giraudeau, Jacques
Jennings, Anne
Limoges, Audrey
Jackson, Rebecca
Ribeiro, Sofia
Massé, Guillaume
author_sort Georgiadis, Eleanor
title Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland
title_short Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland
title_full Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland
title_fullStr Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland
title_full_unstemmed Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland
title_sort local and regional controls on holocene sea ice dynamics and oceanography in nares strait, northwest greenland
publishDate 2020
url https://curis.ku.dk/portal/da/publications/local-and-regional-controls-on-holocene-sea-ice-dynamics-and-oceanography-in-nares-strait-northwest-greenland(2250c63c-f76a-4412-9250-9818f09bff0b).html
https://doi.org/10.1016/j.margeo.2020.106115
http://www.scopus.com/inward/record.url?scp=85077808499&partnerID=8YFLogxK
genre Arctic
Arctic Ocean
Baffin Bay
Baffin Bay
Baffin
Foraminifera*
Greenland
Ice Sheet
Kane Basin
Nares strait
Sea ice
genre_facet Arctic
Arctic Ocean
Baffin Bay
Baffin Bay
Baffin
Foraminifera*
Greenland
Ice Sheet
Kane Basin
Nares strait
Sea ice
op_source Georgiadis , E , Giraudeau , J , Jennings , A , Limoges , A , Jackson , R , Ribeiro , S & Massé , G 2020 , ' Local and regional controls on Holocene sea ice dynamics and oceanography in Nares Strait, Northwest Greenland ' , Marine Geology , vol. 422 , 106115 . https://doi.org/10.1016/j.margeo.2020.106115
op_rights info:eu-repo/semantics/openAccess
op_doi https://doi.org/10.1016/j.margeo.2020.106115
container_title Marine Geology
container_volume 422
container_start_page 106115
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