Turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers

Late winter measurements of turbulent quantities in tidally modulated flow under land-fast sea ice near the Erebus Glacier Tongue, McMurdo Sound, Antarctica, identified processes that influence growth at the interface of an ice surface in contact with supercooled seawater. The data show that turbule...

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Published in:Ocean Science
Main Authors: McPhee, Miles G., Stevens, Craig L., Smith, Inga J., Robinson, Natalie J.
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2016
Subjects:
Online Access:https://doi.org/10.5194/os-12-507-2016
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author McPhee, Miles G.
Stevens, Craig L.
Smith, Inga J.
Robinson, Natalie J.
author_facet McPhee, Miles G.
Stevens, Craig L.
Smith, Inga J.
Robinson, Natalie J.
author_sort McPhee, Miles G.
collection Niedersächsisches Online-Archiv NOA
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container_start_page 507
container_title Ocean Science
container_volume 12
description Late winter measurements of turbulent quantities in tidally modulated flow under land-fast sea ice near the Erebus Glacier Tongue, McMurdo Sound, Antarctica, identified processes that influence growth at the interface of an ice surface in contact with supercooled seawater. The data show that turbulent heat exchange at the ocean–ice boundary is characterized by the product of friction velocity and (negative) water temperature departure from freezing, analogous to similar results for moderate melting rates in seawater above freezing. Platelet ice growth appears to increase the hydraulic roughness (drag) of fast ice compared with undeformed fast ice without platelets. Platelet growth in supercooled water under thick ice appears to be rate-limited by turbulent heat transfer and that this is a significant factor to be considered in mass transfer at the underside of ice shelves and sea ice in the vicinity of ice shelves.
format Article in Journal/Newspaper
genre Antarc*
Antarctica
Erebus Glacier
Ice Shelves
McMurdo Sound
Sea ice
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Antarctica
Erebus Glacier
Ice Shelves
McMurdo Sound
Sea ice
geographic Erebus Glacier
Erebus Glacier Tongue
McMurdo Sound
geographic_facet Erebus Glacier
Erebus Glacier Tongue
McMurdo Sound
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spelling ftnonlinearchiv:oai:noa.gwlb.de:cop_mods_00013670 2025-01-16T19:01:02+00:00 Turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers McPhee, Miles G. Stevens, Craig L. Smith, Inga J. Robinson, Natalie J. 2016-04 electronic https://doi.org/10.5194/os-12-507-2016 https://noa.gwlb.de/receive/cop_mods_00013670 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00013626/os-12-507-2016.pdf https://os.copernicus.org/articles/12/507/2016/os-12-507-2016.pdf eng eng Copernicus Publications Ocean Science -- http://www.bibliothek.uni-regensburg.de/ezeit/?2183769 -- http://www.copernicus.org/EGU/os/os.html -- 1812-0792 https://doi.org/10.5194/os-12-507-2016 https://noa.gwlb.de/receive/cop_mods_00013670 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00013626/os-12-507-2016.pdf https://os.copernicus.org/articles/12/507/2016/os-12-507-2016.pdf uneingeschränkt info:eu-repo/semantics/openAccess article Verlagsveröffentlichung article Text doc-type:article 2016 ftnonlinearchiv https://doi.org/10.5194/os-12-507-2016 2022-02-08T22:55:30Z Late winter measurements of turbulent quantities in tidally modulated flow under land-fast sea ice near the Erebus Glacier Tongue, McMurdo Sound, Antarctica, identified processes that influence growth at the interface of an ice surface in contact with supercooled seawater. The data show that turbulent heat exchange at the ocean–ice boundary is characterized by the product of friction velocity and (negative) water temperature departure from freezing, analogous to similar results for moderate melting rates in seawater above freezing. Platelet ice growth appears to increase the hydraulic roughness (drag) of fast ice compared with undeformed fast ice without platelets. Platelet growth in supercooled water under thick ice appears to be rate-limited by turbulent heat transfer and that this is a significant factor to be considered in mass transfer at the underside of ice shelves and sea ice in the vicinity of ice shelves. Article in Journal/Newspaper Antarc* Antarctica Erebus Glacier Ice Shelves McMurdo Sound Sea ice Niedersächsisches Online-Archiv NOA Erebus Glacier ENVELOPE(167.000,167.000,-77.683,-77.683) Erebus Glacier Tongue ENVELOPE(166.667,166.667,-77.700,-77.700) McMurdo Sound Ocean Science 12 2 507 515
spellingShingle article
Verlagsveröffentlichung
McPhee, Miles G.
Stevens, Craig L.
Smith, Inga J.
Robinson, Natalie J.
Turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers
title Turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers
title_full Turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers
title_fullStr Turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers
title_full_unstemmed Turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers
title_short Turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers
title_sort turbulent heat transfer as a control of platelet ice growth in supercooled under-ice ocean boundary layers
topic article
Verlagsveröffentlichung
topic_facet article
Verlagsveröffentlichung
url https://doi.org/10.5194/os-12-507-2016
https://noa.gwlb.de/receive/cop_mods_00013670
https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00013626/os-12-507-2016.pdf
https://os.copernicus.org/articles/12/507/2016/os-12-507-2016.pdf