Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy
Rutford Ice Stream, West Antarctica, drains a catchment of >45 000 km(2) into the Ronne Ice Shelf through a 26 km wide, 2.4 km deep subglacial trough adjacent to the Ellsworth Mountains. Forty-two per cent of its catchment boundary is common with Pine Island Glacier, where rapid change to ice dyn...
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ftnerc:oai:nora.nerc.ac.uk:11105 2023-05-15T13:29:21+02:00 Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy King, Edward C. 2009 http://nora.nerc.ac.uk/id/eprint/11105/ http://www.igsoc.org/annals/V50/51/a51a064.pdf unknown International Glaciological Society King, Edward C. orcid:0000-0003-3793-3915 . 2009 Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy. Annals of Glaciology, 50 (51). 42-48. Glaciology Earth Sciences Publication - Article PeerReviewed 2009 ftnerc 2023-02-04T19:27:08Z Rutford Ice Stream, West Antarctica, drains a catchment of >45 000 km(2) into the Ronne Ice Shelf through a 26 km wide, 2.4 km deep subglacial trough adjacent to the Ellsworth Mountains. Forty-two per cent of its catchment boundary is common with Pine Island Glacier, where rapid change to ice dynamics is currently underway. These changes may eventually affect adjacent catchments such as Rutford. Radar sounding data were acquired over the Rutford ice-drainage basin that show the internal structure. In particular, distinctive reflector groups were identified that mark the boundaries between four different flow elements. The flow-margin reflector groups include curvilinear events that cross-cut isochrones and are therefore likely to be post-depositional. These reflections may arise from crystal orientation fabrics generated by localized strain in a flow margin. One of the sectors of the ice-drainage basin supplies the largest share (38%) of the ice volume flux through the main trunk of Rutford Ice Stream. This sector may be preferentially affected by continuing surface lowering in the Pine Island Glacier catchment. Article in Journal/Newspaper Annals of Glaciology Antarc* Antarctica Ice Shelf Pine Island Pine Island Glacier Ronne Ice Shelf Rutford Ice Stream West Antarctica Natural Environment Research Council: NERC Open Research Archive West Antarctica Ronne Ice Shelf ENVELOPE(-61.000,-61.000,-78.500,-78.500) Pine Island Glacier ENVELOPE(-101.000,-101.000,-75.000,-75.000) Ellsworth Mountains ENVELOPE(-85.000,-85.000,-78.750,-78.750) Rutford ENVELOPE(-85.300,-85.300,-78.600,-78.600) Rutford Ice Stream ENVELOPE(-80.000,-80.000,-79.167,-79.167) |
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Open Polar |
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Natural Environment Research Council: NERC Open Research Archive |
op_collection_id |
ftnerc |
language |
unknown |
topic |
Glaciology Earth Sciences |
spellingShingle |
Glaciology Earth Sciences King, Edward C. Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy |
topic_facet |
Glaciology Earth Sciences |
description |
Rutford Ice Stream, West Antarctica, drains a catchment of >45 000 km(2) into the Ronne Ice Shelf through a 26 km wide, 2.4 km deep subglacial trough adjacent to the Ellsworth Mountains. Forty-two per cent of its catchment boundary is common with Pine Island Glacier, where rapid change to ice dynamics is currently underway. These changes may eventually affect adjacent catchments such as Rutford. Radar sounding data were acquired over the Rutford ice-drainage basin that show the internal structure. In particular, distinctive reflector groups were identified that mark the boundaries between four different flow elements. The flow-margin reflector groups include curvilinear events that cross-cut isochrones and are therefore likely to be post-depositional. These reflections may arise from crystal orientation fabrics generated by localized strain in a flow margin. One of the sectors of the ice-drainage basin supplies the largest share (38%) of the ice volume flux through the main trunk of Rutford Ice Stream. This sector may be preferentially affected by continuing surface lowering in the Pine Island Glacier catchment. |
format |
Article in Journal/Newspaper |
author |
King, Edward C. |
author_facet |
King, Edward C. |
author_sort |
King, Edward C. |
title |
Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy |
title_short |
Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy |
title_full |
Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy |
title_fullStr |
Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy |
title_full_unstemmed |
Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy |
title_sort |
flow dynamics of the rutford ice stream ice-drainage basin, west antarctica, from radar stratigraphy |
publisher |
International Glaciological Society |
publishDate |
2009 |
url |
http://nora.nerc.ac.uk/id/eprint/11105/ http://www.igsoc.org/annals/V50/51/a51a064.pdf |
long_lat |
ENVELOPE(-61.000,-61.000,-78.500,-78.500) ENVELOPE(-101.000,-101.000,-75.000,-75.000) ENVELOPE(-85.000,-85.000,-78.750,-78.750) ENVELOPE(-85.300,-85.300,-78.600,-78.600) ENVELOPE(-80.000,-80.000,-79.167,-79.167) |
geographic |
West Antarctica Ronne Ice Shelf Pine Island Glacier Ellsworth Mountains Rutford Rutford Ice Stream |
geographic_facet |
West Antarctica Ronne Ice Shelf Pine Island Glacier Ellsworth Mountains Rutford Rutford Ice Stream |
genre |
Annals of Glaciology Antarc* Antarctica Ice Shelf Pine Island Pine Island Glacier Ronne Ice Shelf Rutford Ice Stream West Antarctica |
genre_facet |
Annals of Glaciology Antarc* Antarctica Ice Shelf Pine Island Pine Island Glacier Ronne Ice Shelf Rutford Ice Stream West Antarctica |
op_relation |
King, Edward C. orcid:0000-0003-3793-3915 . 2009 Flow dynamics of the Rutford Ice Stream ice-drainage basin, West Antarctica, from radar stratigraphy. Annals of Glaciology, 50 (51). 42-48. |
_version_ |
1766000160056279040 |