Surface structure and stability of the Larsen C ice shelf, Antarctic Peninsula

A structural glaciological description and analysis of surface morphological features of the Larsen C ice shelf, Antarctic Peninsula, is derived from satellite images spanning the period 1963-2007. The data are evaluated in two time ranges: a comparison of a 1963 satellite image photomosaic with a m...

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Main Authors: Glasser, NF, Kulessa, B, Luckman, A, Jansen, D, King, EC, Sammonds, PR, Scambos, TA, Jezek, KC
Format: Article in Journal/Newspaper
Language:unknown
Published: INT GLACIOL SOC 2009
Subjects:
Online Access:http://discovery.ucl.ac.uk/126577/
id ftucl:oai:eprints.ucl.ac.uk.OAI2:126577
record_format openpolar
spelling ftucl:oai:eprints.ucl.ac.uk.OAI2:126577 2023-05-15T14:02:48+02:00 Surface structure and stability of the Larsen C ice shelf, Antarctic Peninsula Glasser, NF Kulessa, B Luckman, A Jansen, D King, EC Sammonds, PR Scambos, TA Jezek, KC 2009 http://discovery.ucl.ac.uk/126577/ unknown INT GLACIOL SOC J GLACIOL , 55 (191) 400 - 410. (2009) SATELLITE PHOTOGRAPHY RIFT PROPAGATION EAST ANTARCTICA BREAK-UP COLLAPSE DISINTEGRATION RETREAT IMAGERY BENEATH CREVASSES Article 2009 ftucl 2017-02-09T23:11:16Z A structural glaciological description and analysis of surface morphological features of the Larsen C ice shelf, Antarctic Peninsula, is derived from satellite images spanning the period 1963-2007. The data are evaluated in two time ranges: a comparison of a 1963 satellite image photomosaic with a modern digital mosaic compiled using 2003/04 austral summer data; and an image series since 2003 showing recent evolution of the shelf. We map the ice-shelf edge, rift swarms, crevasses and crevasse traces, and linear longitudinal structures (called 'flow stripes' or 'streak lines'). The latter are observed to be continuous over distances of up to 200km from the grounding line to the ice-shelf edge, with little evidence of changes in pattern over that distance. Integrated velocity measurements along a flowline indicate that the shelf has been stable for similar to 560years in the mid-shelf area. Linear longitudinal features may be grouped into 12 units, each related to one or a small group of outlet feeder glaciers to the shelf. We observe that the boundaries between these flow units often mark rift terminations. The boundary zones originate upstream at capes, islands or other suture areas between outlet glaciers. In agreement with previous work, our findings imply that rift terminations within such suture zones indicate that they contain anomalously soft ice. We thus suggest that suture zones within the Larsen C ice shelf, and perhaps within ice shelves more generally, may act to stabilize them by reducing regional stress intensities and thus rates of rift lengthening. Article in Journal/Newspaper Antarc* Antarctic Antarctic Peninsula Antarctica East Antarctica Ice Shelf Ice Shelves University College London: UCL Discovery Antarctic Antarctic Peninsula Austral East Antarctica
institution Open Polar
collection University College London: UCL Discovery
op_collection_id ftucl
language unknown
topic SATELLITE PHOTOGRAPHY
RIFT PROPAGATION
EAST ANTARCTICA
BREAK-UP
COLLAPSE
DISINTEGRATION
RETREAT
IMAGERY
BENEATH
CREVASSES
spellingShingle SATELLITE PHOTOGRAPHY
RIFT PROPAGATION
EAST ANTARCTICA
BREAK-UP
COLLAPSE
DISINTEGRATION
RETREAT
IMAGERY
BENEATH
CREVASSES
Glasser, NF
Kulessa, B
Luckman, A
Jansen, D
King, EC
Sammonds, PR
Scambos, TA
Jezek, KC
Surface structure and stability of the Larsen C ice shelf, Antarctic Peninsula
topic_facet SATELLITE PHOTOGRAPHY
RIFT PROPAGATION
EAST ANTARCTICA
BREAK-UP
COLLAPSE
DISINTEGRATION
RETREAT
IMAGERY
BENEATH
CREVASSES
description A structural glaciological description and analysis of surface morphological features of the Larsen C ice shelf, Antarctic Peninsula, is derived from satellite images spanning the period 1963-2007. The data are evaluated in two time ranges: a comparison of a 1963 satellite image photomosaic with a modern digital mosaic compiled using 2003/04 austral summer data; and an image series since 2003 showing recent evolution of the shelf. We map the ice-shelf edge, rift swarms, crevasses and crevasse traces, and linear longitudinal structures (called 'flow stripes' or 'streak lines'). The latter are observed to be continuous over distances of up to 200km from the grounding line to the ice-shelf edge, with little evidence of changes in pattern over that distance. Integrated velocity measurements along a flowline indicate that the shelf has been stable for similar to 560years in the mid-shelf area. Linear longitudinal features may be grouped into 12 units, each related to one or a small group of outlet feeder glaciers to the shelf. We observe that the boundaries between these flow units often mark rift terminations. The boundary zones originate upstream at capes, islands or other suture areas between outlet glaciers. In agreement with previous work, our findings imply that rift terminations within such suture zones indicate that they contain anomalously soft ice. We thus suggest that suture zones within the Larsen C ice shelf, and perhaps within ice shelves more generally, may act to stabilize them by reducing regional stress intensities and thus rates of rift lengthening.
format Article in Journal/Newspaper
author Glasser, NF
Kulessa, B
Luckman, A
Jansen, D
King, EC
Sammonds, PR
Scambos, TA
Jezek, KC
author_facet Glasser, NF
Kulessa, B
Luckman, A
Jansen, D
King, EC
Sammonds, PR
Scambos, TA
Jezek, KC
author_sort Glasser, NF
title Surface structure and stability of the Larsen C ice shelf, Antarctic Peninsula
title_short Surface structure and stability of the Larsen C ice shelf, Antarctic Peninsula
title_full Surface structure and stability of the Larsen C ice shelf, Antarctic Peninsula
title_fullStr Surface structure and stability of the Larsen C ice shelf, Antarctic Peninsula
title_full_unstemmed Surface structure and stability of the Larsen C ice shelf, Antarctic Peninsula
title_sort surface structure and stability of the larsen c ice shelf, antarctic peninsula
publisher INT GLACIOL SOC
publishDate 2009
url http://discovery.ucl.ac.uk/126577/
geographic Antarctic
Antarctic Peninsula
Austral
East Antarctica
geographic_facet Antarctic
Antarctic Peninsula
Austral
East Antarctica
genre Antarc*
Antarctic
Antarctic Peninsula
Antarctica
East Antarctica
Ice Shelf
Ice Shelves
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Antarctica
East Antarctica
Ice Shelf
Ice Shelves
op_source J GLACIOL , 55 (191) 400 - 410. (2009)
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