New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project
Ice within marine basins of East Antarctica, and their outlets, represent the ultimate limit on sea level change. The region of East Antarctica between the Ross Sea and Wilkes Land hosts a number of major basin, but has been poorly understood. Long range aerogeophysics from US, Australian and French...
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ftunivtasecite:oai:ecite.utas.edu.au:73261 2023-05-15T14:02:30+02:00 New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project Blankenship, DD Young, DA Siegert, MJ van Ommen, TD Roberts, JL Wright, A Warner, RC Holt, JW Young, NW Le Meur, E Legresy, B Cavitte, M Icecap, Team 2010 http://ecite.utas.edu.au/73261 en eng American Geophysical Union Blankenship, DD and Young, DA and Siegert, MJ and van Ommen, TD and Roberts, JL and Wright, A and Warner, RC and Holt, JW and Young, NW and Le Meur, E and Legresy, B and Cavitte, M and Icecap, Team, New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project, 2010 AGU Fall Meeting, 13-17 December 2010, San Francisco, California, pp. C22B-05. (2010) [Refereed Conference Paper] http://ecite.utas.edu.au/73261 Earth Sciences Physical Geography and Environmental Geoscience Glaciology Refereed Conference Paper PeerReviewed 2010 ftunivtasecite 2019-12-13T21:40:26Z Ice within marine basins of East Antarctica, and their outlets, represent the ultimate limit on sea level change. The region of East Antarctica between the Ross Sea and Wilkes Land hosts a number of major basin, but has been poorly understood. Long range aerogeophysics from US, Australian and French stations, with significant British and IceBridge support, has, under the banner of the ICECAP project, greatly improved our knowledge of ice thickness, surface elevation, and crustal structure of the Wilkes and Aurora Subglacial Basins, as well as the Totten Glacier, Cook Ice Shelf, and Byrd Glacier. We will discuss the evolution of the Wilkes and Aurora Subglacial Basins, new constraints on the geometry of the major outlet glaciers, as well as our results from surface elevation change measurements over dynamic regions of the ice sheet. We will discuss the implications of our data for the presence of mid Pleistocene ice in central East Antarctica. Future directions for ICECAP will be discussed. Conference Object Antarc* Antarctic Antarctica Byrd Glacier Cook Ice Shelf East Antarctica Ice Sheet Ice Shelf IPY Ross Sea Totten Glacier Wilkes Land eCite UTAS (University of Tasmania) Antarctic Byrd Byrd Glacier ENVELOPE(160.333,160.333,-80.250,-80.250) Cook Ice Shelf ENVELOPE(152.500,152.500,-68.667,-68.667) East Antarctic Ice Sheet East Antarctica Glacier Cook ENVELOPE(69.039,69.039,-49.304,-49.304) Ross Sea Totten Glacier ENVELOPE(116.333,116.333,-66.833,-66.833) Wilkes Land ENVELOPE(120.000,120.000,-69.000,-69.000) |
institution |
Open Polar |
collection |
eCite UTAS (University of Tasmania) |
op_collection_id |
ftunivtasecite |
language |
English |
topic |
Earth Sciences Physical Geography and Environmental Geoscience Glaciology |
spellingShingle |
Earth Sciences Physical Geography and Environmental Geoscience Glaciology Blankenship, DD Young, DA Siegert, MJ van Ommen, TD Roberts, JL Wright, A Warner, RC Holt, JW Young, NW Le Meur, E Legresy, B Cavitte, M Icecap, Team New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project |
topic_facet |
Earth Sciences Physical Geography and Environmental Geoscience Glaciology |
description |
Ice within marine basins of East Antarctica, and their outlets, represent the ultimate limit on sea level change. The region of East Antarctica between the Ross Sea and Wilkes Land hosts a number of major basin, but has been poorly understood. Long range aerogeophysics from US, Australian and French stations, with significant British and IceBridge support, has, under the banner of the ICECAP project, greatly improved our knowledge of ice thickness, surface elevation, and crustal structure of the Wilkes and Aurora Subglacial Basins, as well as the Totten Glacier, Cook Ice Shelf, and Byrd Glacier. We will discuss the evolution of the Wilkes and Aurora Subglacial Basins, new constraints on the geometry of the major outlet glaciers, as well as our results from surface elevation change measurements over dynamic regions of the ice sheet. We will discuss the implications of our data for the presence of mid Pleistocene ice in central East Antarctica. Future directions for ICECAP will be discussed. |
format |
Conference Object |
author |
Blankenship, DD Young, DA Siegert, MJ van Ommen, TD Roberts, JL Wright, A Warner, RC Holt, JW Young, NW Le Meur, E Legresy, B Cavitte, M Icecap, Team |
author_facet |
Blankenship, DD Young, DA Siegert, MJ van Ommen, TD Roberts, JL Wright, A Warner, RC Holt, JW Young, NW Le Meur, E Legresy, B Cavitte, M Icecap, Team |
author_sort |
Blankenship, DD |
title |
New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project |
title_short |
New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project |
title_full |
New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project |
title_fullStr |
New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project |
title_full_unstemmed |
New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project |
title_sort |
new constraints on the structure and dynamics of the east antarctic ice sheet from the joint ipy/ice bridge icecap aerogeophysical project |
publisher |
American Geophysical Union |
publishDate |
2010 |
url |
http://ecite.utas.edu.au/73261 |
long_lat |
ENVELOPE(160.333,160.333,-80.250,-80.250) ENVELOPE(152.500,152.500,-68.667,-68.667) ENVELOPE(69.039,69.039,-49.304,-49.304) ENVELOPE(116.333,116.333,-66.833,-66.833) ENVELOPE(120.000,120.000,-69.000,-69.000) |
geographic |
Antarctic Byrd Byrd Glacier Cook Ice Shelf East Antarctic Ice Sheet East Antarctica Glacier Cook Ross Sea Totten Glacier Wilkes Land |
geographic_facet |
Antarctic Byrd Byrd Glacier Cook Ice Shelf East Antarctic Ice Sheet East Antarctica Glacier Cook Ross Sea Totten Glacier Wilkes Land |
genre |
Antarc* Antarctic Antarctica Byrd Glacier Cook Ice Shelf East Antarctica Ice Sheet Ice Shelf IPY Ross Sea Totten Glacier Wilkes Land |
genre_facet |
Antarc* Antarctic Antarctica Byrd Glacier Cook Ice Shelf East Antarctica Ice Sheet Ice Shelf IPY Ross Sea Totten Glacier Wilkes Land |
op_relation |
Blankenship, DD and Young, DA and Siegert, MJ and van Ommen, TD and Roberts, JL and Wright, A and Warner, RC and Holt, JW and Young, NW and Le Meur, E and Legresy, B and Cavitte, M and Icecap, Team, New constraints on the structure and dynamics of the East Antarctic Ice Sheet from the joint IPY/Ice Bridge ICECAP aerogeophysical project, 2010 AGU Fall Meeting, 13-17 December 2010, San Francisco, California, pp. C22B-05. (2010) [Refereed Conference Paper] http://ecite.utas.edu.au/73261 |
_version_ |
1766272776062107648 |