Can rifts alter ocean dynamics beneath ice shelves?

Land ice discharge from the Antarctic continent into the ocean is restrained by ice shelves, floating extensions of grounded ice that buttress the glacier outflow. The ongoing thinning of these ice shelves – largely due to enhanced melting at their base in response to global warming – is known to ac...

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Published in:The Cryosphere
Main Authors: Poinelli, M. (author), Schodlok, Michael (author), Larour, Eric (author), Vizcaino, M. (author), Riva, R.E.M. (author)
Format: Article in Journal/Newspaper
Language:English
Published: 2023
Subjects:
Online Access:http://resolver.tudelft.nl/uuid:19c66747-9d98-43eb-9fad-987287c7add1
https://doi.org/10.5194/tc-17-2261-2023
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spelling fttudelft:oai:tudelft.nl:uuid:19c66747-9d98-43eb-9fad-987287c7add1 2024-02-11T09:57:02+01:00 Can rifts alter ocean dynamics beneath ice shelves? Poinelli, M. (author) Schodlok, Michael (author) Larour, Eric (author) Vizcaino, M. (author) Riva, R.E.M. (author) 2023 http://resolver.tudelft.nl/uuid:19c66747-9d98-43eb-9fad-987287c7add1 https://doi.org/10.5194/tc-17-2261-2023 en eng The Cryosphere--1994-0416--cd846f1b-e0c2-4859-8c64-145cdcd59512 http://resolver.tudelft.nl/uuid:19c66747-9d98-43eb-9fad-987287c7add1 https://doi.org/10.5194/tc-17-2261-2023 © 2023 M. Poinelli, Michael Schodlok, Eric Larour, M. Vizcaino, R.E.M. Riva journal article 2023 fttudelft https://doi.org/10.5194/tc-17-2261-2023 2024-01-24T23:34:34Z Land ice discharge from the Antarctic continent into the ocean is restrained by ice shelves, floating extensions of grounded ice that buttress the glacier outflow. The ongoing thinning of these ice shelves – largely due to enhanced melting at their base in response to global warming – is known to accelerate the release of glacier meltwater into the world oceans, augmenting global sea level. Mechanisms of ocean heat intrusion under the ice base are therefore crucial to project the future of Antarctic ice shelves. Furthermore, ice shelves are weakened by the presence of kilometer-wide full-thickness ice rifts, which are observed all around Antarctica. However, their impact on ocean circulation around and below ice shelves has been largely unexplored as ocean models are commonly characterized by resolutions that are too coarse to resolve their presence. Here, we apply the Massachusetts Institute of Technology general circulation model at high resolution to investigate the sensitivity of sub-shelf ocean dynamics and ice-shelf melting to the presence of a kilometer-wide rift in proximity of the ice front. We find that (a) the rift curtails water and heat intrusion beneath the ice-shelf base and (b) the basal melting of a rifted ice shelf is on average 20 % lower than for an intact ice shelf under identical forcing. Notably, we calculate a significant reduction in melting rates of up to 30 % near the grounding line of a rifted ice shelf. We therefore posit that rifts and their impact on the sub-shelf dynamics are important to consider in order to accurately reproduce and project pathways of heat intrusion into the ice-shelf cavity. Physical and Space Geodesy Article in Journal/Newspaper Antarc* Antarctic Antarctica Ice Shelf Ice Shelves The Cryosphere Delft University of Technology: Institutional Repository Antarctic The Antarctic Buttress ENVELOPE(-57.083,-57.083,-63.550,-63.550) The Cryosphere 17 6 2261 2283
institution Open Polar
collection Delft University of Technology: Institutional Repository
op_collection_id fttudelft
language English
description Land ice discharge from the Antarctic continent into the ocean is restrained by ice shelves, floating extensions of grounded ice that buttress the glacier outflow. The ongoing thinning of these ice shelves – largely due to enhanced melting at their base in response to global warming – is known to accelerate the release of glacier meltwater into the world oceans, augmenting global sea level. Mechanisms of ocean heat intrusion under the ice base are therefore crucial to project the future of Antarctic ice shelves. Furthermore, ice shelves are weakened by the presence of kilometer-wide full-thickness ice rifts, which are observed all around Antarctica. However, their impact on ocean circulation around and below ice shelves has been largely unexplored as ocean models are commonly characterized by resolutions that are too coarse to resolve their presence. Here, we apply the Massachusetts Institute of Technology general circulation model at high resolution to investigate the sensitivity of sub-shelf ocean dynamics and ice-shelf melting to the presence of a kilometer-wide rift in proximity of the ice front. We find that (a) the rift curtails water and heat intrusion beneath the ice-shelf base and (b) the basal melting of a rifted ice shelf is on average 20 % lower than for an intact ice shelf under identical forcing. Notably, we calculate a significant reduction in melting rates of up to 30 % near the grounding line of a rifted ice shelf. We therefore posit that rifts and their impact on the sub-shelf dynamics are important to consider in order to accurately reproduce and project pathways of heat intrusion into the ice-shelf cavity. Physical and Space Geodesy
format Article in Journal/Newspaper
author Poinelli, M. (author)
Schodlok, Michael (author)
Larour, Eric (author)
Vizcaino, M. (author)
Riva, R.E.M. (author)
spellingShingle Poinelli, M. (author)
Schodlok, Michael (author)
Larour, Eric (author)
Vizcaino, M. (author)
Riva, R.E.M. (author)
Can rifts alter ocean dynamics beneath ice shelves?
author_facet Poinelli, M. (author)
Schodlok, Michael (author)
Larour, Eric (author)
Vizcaino, M. (author)
Riva, R.E.M. (author)
author_sort Poinelli, M. (author)
title Can rifts alter ocean dynamics beneath ice shelves?
title_short Can rifts alter ocean dynamics beneath ice shelves?
title_full Can rifts alter ocean dynamics beneath ice shelves?
title_fullStr Can rifts alter ocean dynamics beneath ice shelves?
title_full_unstemmed Can rifts alter ocean dynamics beneath ice shelves?
title_sort can rifts alter ocean dynamics beneath ice shelves?
publishDate 2023
url http://resolver.tudelft.nl/uuid:19c66747-9d98-43eb-9fad-987287c7add1
https://doi.org/10.5194/tc-17-2261-2023
long_lat ENVELOPE(-57.083,-57.083,-63.550,-63.550)
geographic Antarctic
The Antarctic
Buttress
geographic_facet Antarctic
The Antarctic
Buttress
genre Antarc*
Antarctic
Antarctica
Ice Shelf
Ice Shelves
The Cryosphere
genre_facet Antarc*
Antarctic
Antarctica
Ice Shelf
Ice Shelves
The Cryosphere
op_relation The Cryosphere--1994-0416--cd846f1b-e0c2-4859-8c64-145cdcd59512
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https://doi.org/10.5194/tc-17-2261-2023
op_rights © 2023 M. Poinelli, Michael Schodlok, Eric Larour, M. Vizcaino, R.E.M. Riva
op_doi https://doi.org/10.5194/tc-17-2261-2023
container_title The Cryosphere
container_volume 17
container_issue 6
container_start_page 2261
op_container_end_page 2283
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