Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers

Subglacial meltwater draining along the bed of fast-flowing, marine-terminating glaciers emerges at the grounding line, where the ice either goes afloat to form an ice shelf or terminates in a calving face. The input of freshwater to the ocean provides a source of buoyancy and drives convective moti...

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Bibliographic Details
Published in:Journal of Physical Oceanography
Main Author: Jenkins, Adrian
Format: Article in Journal/Newspaper
Language:English
Published: American Meteorological Society 2011
Subjects:
Online Access:https://nrl.northumbria.ac.uk/id/eprint/42266/
https://doi.org/10.1175/JPO-D-11-03.1
https://nrl.northumbria.ac.uk/id/eprint/42266/1/Convection-driven%20melting%20near%20the%20grounding%20lines%20of%20ice%20shelves%20and%20tidewater%20glaciers.pdf
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spelling ftunivnorthumb:oai:nrl.northumbria.ac.uk:42266 2023-05-15T16:41:55+02:00 Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers Jenkins, Adrian 2011-12-01 text https://nrl.northumbria.ac.uk/id/eprint/42266/ https://doi.org/10.1175/JPO-D-11-03.1 https://nrl.northumbria.ac.uk/id/eprint/42266/1/Convection-driven%20melting%20near%20the%20grounding%20lines%20of%20ice%20shelves%20and%20tidewater%20glaciers.pdf en eng American Meteorological Society https://nrl.northumbria.ac.uk/id/eprint/42266/1/Convection-driven%20melting%20near%20the%20grounding%20lines%20of%20ice%20shelves%20and%20tidewater%20glaciers.pdf Jenkins, Adrian (2011) Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers. Journal of Physical Oceanography, 41 (12). pp. 2279-2294. ISSN 0022-3670 F700 Ocean Sciences Article PeerReviewed 2011 ftunivnorthumb https://doi.org/10.1175/JPO-D-11-03.1 2022-09-25T06:11:31Z Subglacial meltwater draining along the bed of fast-flowing, marine-terminating glaciers emerges at the grounding line, where the ice either goes afloat to form an ice shelf or terminates in a calving face. The input of freshwater to the ocean provides a source of buoyancy and drives convective motion alongside the ice-ocean interface. This process is modeled using the theory of buoyant plumes that has previously been applied to the study of the larger-scale circulation beneath ice shelves. The plume grows through entrainment of ocean waters, and the heat brought into the plume as a result drives melting at the ice-ocean interface. The equations are nondimensionalized by using scales appropriate for the region where the subglacial drainage, rather than the subsequent addition of meltwater, supplies the majority of the buoyancy forcing. It is found that the melt rate within this region can be approximated reasonably well by a function that is linear in ocean temperature, has a cube root dependence on the flux of subglacial meltwater, and has a complex dependency on the slope of the ice-ocean interface. The model is used to investigate variability in melting induced by changes in both ocean temperature and subglacial discharge for a number of realistic examples of ice shelves and tidewater glaciers. The results show how warming ocean waters and increasing subglacial drainage both generate increases in melting near the grounding line. Article in Journal/Newspaper Ice Shelf Ice Shelves Northumbria University, Newcastle: Northumbria Research Link (NRL) Journal of Physical Oceanography 41 12 2279 2294
institution Open Polar
collection Northumbria University, Newcastle: Northumbria Research Link (NRL)
op_collection_id ftunivnorthumb
language English
topic F700 Ocean Sciences
spellingShingle F700 Ocean Sciences
Jenkins, Adrian
Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers
topic_facet F700 Ocean Sciences
description Subglacial meltwater draining along the bed of fast-flowing, marine-terminating glaciers emerges at the grounding line, where the ice either goes afloat to form an ice shelf or terminates in a calving face. The input of freshwater to the ocean provides a source of buoyancy and drives convective motion alongside the ice-ocean interface. This process is modeled using the theory of buoyant plumes that has previously been applied to the study of the larger-scale circulation beneath ice shelves. The plume grows through entrainment of ocean waters, and the heat brought into the plume as a result drives melting at the ice-ocean interface. The equations are nondimensionalized by using scales appropriate for the region where the subglacial drainage, rather than the subsequent addition of meltwater, supplies the majority of the buoyancy forcing. It is found that the melt rate within this region can be approximated reasonably well by a function that is linear in ocean temperature, has a cube root dependence on the flux of subglacial meltwater, and has a complex dependency on the slope of the ice-ocean interface. The model is used to investigate variability in melting induced by changes in both ocean temperature and subglacial discharge for a number of realistic examples of ice shelves and tidewater glaciers. The results show how warming ocean waters and increasing subglacial drainage both generate increases in melting near the grounding line.
format Article in Journal/Newspaper
author Jenkins, Adrian
author_facet Jenkins, Adrian
author_sort Jenkins, Adrian
title Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers
title_short Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers
title_full Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers
title_fullStr Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers
title_full_unstemmed Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers
title_sort convection-driven melting near the grounding lines of ice shelves and tidewater glaciers
publisher American Meteorological Society
publishDate 2011
url https://nrl.northumbria.ac.uk/id/eprint/42266/
https://doi.org/10.1175/JPO-D-11-03.1
https://nrl.northumbria.ac.uk/id/eprint/42266/1/Convection-driven%20melting%20near%20the%20grounding%20lines%20of%20ice%20shelves%20and%20tidewater%20glaciers.pdf
genre Ice Shelf
Ice Shelves
genre_facet Ice Shelf
Ice Shelves
op_relation https://nrl.northumbria.ac.uk/id/eprint/42266/1/Convection-driven%20melting%20near%20the%20grounding%20lines%20of%20ice%20shelves%20and%20tidewater%20glaciers.pdf
Jenkins, Adrian (2011) Convection-Driven Melting near the Grounding Lines of Ice Shelves and Tidewater Glaciers. Journal of Physical Oceanography, 41 (12). pp. 2279-2294. ISSN 0022-3670
op_doi https://doi.org/10.1175/JPO-D-11-03.1
container_title Journal of Physical Oceanography
container_volume 41
container_issue 12
container_start_page 2279
op_container_end_page 2294
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