Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf

Knowledge gaps about how the ocean melts Antarctica’s ice shelves, borne from a lack of observations, lead to large uncertainties in sea level predictions. Using high-resolution maps of the underside of Dotson Ice Shelf, West Antarctica, we reveal the imprint that ice shelf basal melting leaves on t...

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Published in:Science Advances
Main Authors: Wåhlin, Anna, Alley, Karen E., Begeman, Carolyn, Hegrenæs, Øyvind, Yuan, Xiaohan, Graham, Alastair G. C., Hogan, Kelly, Davis, Peter E. D., Dotto, Tiago S., Eayrs, Clare, Hall, Robert A., Kim, Tae Wan, Larter, Robert D., Ling, Li, Muto, Atsuhiro, Pettit, Erin C., Schmidt, Britney E., Snow, Tasha, Stedt, Filip, Washam, Peter M., Wahlgren, Stina, Wild, Christian, Wellner, Julia, Zheng, Yixi, Heywood, Karen J.
Format: Article in Journal/Newspaper
Language:English
Published: 2024
Subjects:
Online Access:https://ueaeprints.uea.ac.uk/id/eprint/96178/
https://ueaeprints.uea.ac.uk/id/eprint/96178/1/Wahlin_etal_2024_SciAdv_adn9188.pdf
https://doi.org/10.1126/sciadv.adn9188
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spelling ftuniveastangl:oai:ueaeprints.uea.ac.uk:96178 2024-10-13T14:03:18+00:00 Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf Wåhlin, Anna Alley, Karen E. Begeman, Carolyn Hegrenæs, Øyvind Yuan, Xiaohan Graham, Alastair G. C. Hogan, Kelly Davis, Peter E. D. Dotto, Tiago S. Eayrs, Clare Hall, Robert A. Kim, Tae Wan Larter, Robert D. Ling, Li Muto, Atsuhiro Pettit, Erin C. Schmidt, Britney E. Snow, Tasha Stedt, Filip Washam, Peter M. Wahlgren, Stina Wild, Christian Wellner, Julia Zheng, Yixi Heywood, Karen J. 2024-08 application/pdf https://ueaeprints.uea.ac.uk/id/eprint/96178/ https://ueaeprints.uea.ac.uk/id/eprint/96178/1/Wahlin_etal_2024_SciAdv_adn9188.pdf https://doi.org/10.1126/sciadv.adn9188 en eng https://ueaeprints.uea.ac.uk/id/eprint/96178/1/Wahlin_etal_2024_SciAdv_adn9188.pdf Wåhlin, Anna, Alley, Karen E., Begeman, Carolyn, Hegrenæs, Øyvind, Yuan, Xiaohan, Graham, Alastair G. C., Hogan, Kelly, Davis, Peter E. D., Dotto, Tiago S., Eayrs, Clare, Hall, Robert A., Kim, Tae Wan, Larter, Robert D., Ling, Li, Muto, Atsuhiro, Pettit, Erin C., Schmidt, Britney E., Snow, Tasha, Stedt, Filip, Washam, Peter M., Wahlgren, Stina, Wild, Christian, Wellner, Julia, Zheng, Yixi and Heywood, Karen J. (2024) Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf. Science Advances, 10 (31). ISSN 2375-2548 doi:10.1126/sciadv.adn9188 cc_by Article PeerReviewed 2024 ftuniveastangl https://doi.org/10.1126/sciadv.adn9188 2024-10-01T14:40:35Z Knowledge gaps about how the ocean melts Antarctica’s ice shelves, borne from a lack of observations, lead to large uncertainties in sea level predictions. Using high-resolution maps of the underside of Dotson Ice Shelf, West Antarctica, we reveal the imprint that ice shelf basal melting leaves on the ice. Convection and intermittent warm water intrusions form widespread terraced features through slow melting in quiescent areas, while shear-driven turbulence rapidly melts smooth, eroded topographies in outflow areas, as well as enigmatic teardrop-shaped indentations that result from boundary-layer flow rotation. Full-thickness ice fractures, with bases modified by basal melting and convective processes, are observed throughout the area. This new wealth of processes, all active under a single ice shelf, must be considered to accurately predict future Antarctic ice shelf melt. Article in Journal/Newspaper Antarc* Antarctic Antarctica Dotson Ice Shelf Ice Shelf Ice Shelves West Antarctica University of East Anglia: UEA Digital Repository Antarctic West Antarctica Dotson Ice Shelf ENVELOPE(-112.367,-112.367,-74.400,-74.400) Teardrop ENVELOPE(163.917,163.917,-78.150,-78.150) Science Advances 10 31
institution Open Polar
collection University of East Anglia: UEA Digital Repository
op_collection_id ftuniveastangl
language English
description Knowledge gaps about how the ocean melts Antarctica’s ice shelves, borne from a lack of observations, lead to large uncertainties in sea level predictions. Using high-resolution maps of the underside of Dotson Ice Shelf, West Antarctica, we reveal the imprint that ice shelf basal melting leaves on the ice. Convection and intermittent warm water intrusions form widespread terraced features through slow melting in quiescent areas, while shear-driven turbulence rapidly melts smooth, eroded topographies in outflow areas, as well as enigmatic teardrop-shaped indentations that result from boundary-layer flow rotation. Full-thickness ice fractures, with bases modified by basal melting and convective processes, are observed throughout the area. This new wealth of processes, all active under a single ice shelf, must be considered to accurately predict future Antarctic ice shelf melt.
format Article in Journal/Newspaper
author Wåhlin, Anna
Alley, Karen E.
Begeman, Carolyn
Hegrenæs, Øyvind
Yuan, Xiaohan
Graham, Alastair G. C.
Hogan, Kelly
Davis, Peter E. D.
Dotto, Tiago S.
Eayrs, Clare
Hall, Robert A.
Kim, Tae Wan
Larter, Robert D.
Ling, Li
Muto, Atsuhiro
Pettit, Erin C.
Schmidt, Britney E.
Snow, Tasha
Stedt, Filip
Washam, Peter M.
Wahlgren, Stina
Wild, Christian
Wellner, Julia
Zheng, Yixi
Heywood, Karen J.
spellingShingle Wåhlin, Anna
Alley, Karen E.
Begeman, Carolyn
Hegrenæs, Øyvind
Yuan, Xiaohan
Graham, Alastair G. C.
Hogan, Kelly
Davis, Peter E. D.
Dotto, Tiago S.
Eayrs, Clare
Hall, Robert A.
Kim, Tae Wan
Larter, Robert D.
Ling, Li
Muto, Atsuhiro
Pettit, Erin C.
Schmidt, Britney E.
Snow, Tasha
Stedt, Filip
Washam, Peter M.
Wahlgren, Stina
Wild, Christian
Wellner, Julia
Zheng, Yixi
Heywood, Karen J.
Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf
author_facet Wåhlin, Anna
Alley, Karen E.
Begeman, Carolyn
Hegrenæs, Øyvind
Yuan, Xiaohan
Graham, Alastair G. C.
Hogan, Kelly
Davis, Peter E. D.
Dotto, Tiago S.
Eayrs, Clare
Hall, Robert A.
Kim, Tae Wan
Larter, Robert D.
Ling, Li
Muto, Atsuhiro
Pettit, Erin C.
Schmidt, Britney E.
Snow, Tasha
Stedt, Filip
Washam, Peter M.
Wahlgren, Stina
Wild, Christian
Wellner, Julia
Zheng, Yixi
Heywood, Karen J.
author_sort Wåhlin, Anna
title Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf
title_short Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf
title_full Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf
title_fullStr Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf
title_full_unstemmed Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf
title_sort swirls and scoops: ice base melt revealed by multibeam imagery of an antarctic ice shelf
publishDate 2024
url https://ueaeprints.uea.ac.uk/id/eprint/96178/
https://ueaeprints.uea.ac.uk/id/eprint/96178/1/Wahlin_etal_2024_SciAdv_adn9188.pdf
https://doi.org/10.1126/sciadv.adn9188
long_lat ENVELOPE(-112.367,-112.367,-74.400,-74.400)
ENVELOPE(163.917,163.917,-78.150,-78.150)
geographic Antarctic
West Antarctica
Dotson Ice Shelf
Teardrop
geographic_facet Antarctic
West Antarctica
Dotson Ice Shelf
Teardrop
genre Antarc*
Antarctic
Antarctica
Dotson Ice Shelf
Ice Shelf
Ice Shelves
West Antarctica
genre_facet Antarc*
Antarctic
Antarctica
Dotson Ice Shelf
Ice Shelf
Ice Shelves
West Antarctica
op_relation https://ueaeprints.uea.ac.uk/id/eprint/96178/1/Wahlin_etal_2024_SciAdv_adn9188.pdf
Wåhlin, Anna, Alley, Karen E., Begeman, Carolyn, Hegrenæs, Øyvind, Yuan, Xiaohan, Graham, Alastair G. C., Hogan, Kelly, Davis, Peter E. D., Dotto, Tiago S., Eayrs, Clare, Hall, Robert A., Kim, Tae Wan, Larter, Robert D., Ling, Li, Muto, Atsuhiro, Pettit, Erin C., Schmidt, Britney E., Snow, Tasha, Stedt, Filip, Washam, Peter M., Wahlgren, Stina, Wild, Christian, Wellner, Julia, Zheng, Yixi and Heywood, Karen J. (2024) Swirls and scoops: Ice base melt revealed by multibeam imagery of an Antarctic ice shelf. Science Advances, 10 (31). ISSN 2375-2548
doi:10.1126/sciadv.adn9188
op_rights cc_by
op_doi https://doi.org/10.1126/sciadv.adn9188
container_title Science Advances
container_volume 10
container_issue 31
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