Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica

Swath bathymetric and sub-bottom profiler data reveal a variety of submarine landforms such as gullies, slide scars, subtle shelf edge-parallel ridges and elongated depressions, and small debris flows along the continental shelf break and upper slope of West Antarctica. Gullies cutting through debri...

Full description

Bibliographic Details
Published in:Marine Geology
Main Authors: Noormets, R., Dowdeswell, J.A., Larter, Robert D., Ó Cofaigh, C., Evans, J.
Format: Article in Journal/Newspaper
Language:unknown
Published: Elsevier 2009
Subjects:
Online Access:http://nora.nerc.ac.uk/id/eprint/11171/
https://doi.org/10.1016/j.margeo.2008.11.011
id ftnerc:oai:nora.nerc.ac.uk:11171
record_format openpolar
spelling ftnerc:oai:nora.nerc.ac.uk:11171 2023-05-15T13:45:10+02:00 Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica Noormets, R. Dowdeswell, J.A. Larter, Robert D. Ó Cofaigh, C. Evans, J. 2009 http://nora.nerc.ac.uk/id/eprint/11171/ https://doi.org/10.1016/j.margeo.2008.11.011 unknown Elsevier Noormets, R.; Dowdeswell, J.A.; Larter, Robert D. orcid:0000-0002-8414-7389 Ó Cofaigh, C.; Evans, J. 2009 Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica. Marine Geology, 258 (1-4). 100-114. https://doi.org/10.1016/j.margeo.2008.11.011 <https://doi.org/10.1016/j.margeo.2008.11.011> Marine Sciences Glaciology Publication - Article PeerReviewed 2009 ftnerc https://doi.org/10.1016/j.margeo.2008.11.011 2023-02-04T19:27:12Z Swath bathymetric and sub-bottom profiler data reveal a variety of submarine landforms such as gullies, slide scars, subtle shelf edge-parallel ridges and elongated depressions, and small debris flows along the continental shelf break and upper slope of West Antarctica. Gullies cutting through debris flow deposits on the Belgica Trough Mouth Fan (TMF) suggest formation after full-glacial deposition on the continental slope. The gullies were most likely eroded by sediment-laden subglacial meltwater flows released from underneath the ice margin grounded at the shelf edge at the onset of deglaciation. Scarcity of subglacial meltwater flow features on the outer shelf suggests that the meltwater reached the shelf edge mainly either through the topmost layer of soft diamict or in the form of dispersed flow beneath the ice, although locally preserved erosional channels indicate that more focused and higher-energy flows also existed. Concentration of gullies on the upper continental slope in front of the marginal areas of the major cross-shelf troughs, as contrasted to their axial parts, is indicative of higher-energy gully-eroding processes there, possibly due to additional subglacial meltwater flow from beneath the slow moving ice lying over the higher banks of the troughs. The shallow and sinuous gully heads observed on the outermost shelf within the Pine Island West Trough may indicate postglacial modification by near-bed currents resulting either from the subglacial meltwater flow from underneath the ice margin positioned at some distance landward from the shelf edge, or from the currents formed by brine rejection during sea ice formation. On the continental slope outside major troughs, slide scars as well as shelf-edge parallel ridges and elongated depressions indicate an unstable and failure-prone uppermost slope, although failures were probably mainly associated with rapid sediment loading during glacial periods. Complex, cauliflower- and amphitheatre-shaped gully heads biting back into the shelf edge suggest ... Article in Journal/Newspaper Antarc* Antarctica Pine Island Sea ice West Antarctica Natural Environment Research Council: NERC Open Research Archive West Antarctica Marine Geology 258 1-4 100 114
institution Open Polar
collection Natural Environment Research Council: NERC Open Research Archive
op_collection_id ftnerc
language unknown
topic Marine Sciences
Glaciology
spellingShingle Marine Sciences
Glaciology
Noormets, R.
Dowdeswell, J.A.
Larter, Robert D.
Ó Cofaigh, C.
Evans, J.
Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica
topic_facet Marine Sciences
Glaciology
description Swath bathymetric and sub-bottom profiler data reveal a variety of submarine landforms such as gullies, slide scars, subtle shelf edge-parallel ridges and elongated depressions, and small debris flows along the continental shelf break and upper slope of West Antarctica. Gullies cutting through debris flow deposits on the Belgica Trough Mouth Fan (TMF) suggest formation after full-glacial deposition on the continental slope. The gullies were most likely eroded by sediment-laden subglacial meltwater flows released from underneath the ice margin grounded at the shelf edge at the onset of deglaciation. Scarcity of subglacial meltwater flow features on the outer shelf suggests that the meltwater reached the shelf edge mainly either through the topmost layer of soft diamict or in the form of dispersed flow beneath the ice, although locally preserved erosional channels indicate that more focused and higher-energy flows also existed. Concentration of gullies on the upper continental slope in front of the marginal areas of the major cross-shelf troughs, as contrasted to their axial parts, is indicative of higher-energy gully-eroding processes there, possibly due to additional subglacial meltwater flow from beneath the slow moving ice lying over the higher banks of the troughs. The shallow and sinuous gully heads observed on the outermost shelf within the Pine Island West Trough may indicate postglacial modification by near-bed currents resulting either from the subglacial meltwater flow from underneath the ice margin positioned at some distance landward from the shelf edge, or from the currents formed by brine rejection during sea ice formation. On the continental slope outside major troughs, slide scars as well as shelf-edge parallel ridges and elongated depressions indicate an unstable and failure-prone uppermost slope, although failures were probably mainly associated with rapid sediment loading during glacial periods. Complex, cauliflower- and amphitheatre-shaped gully heads biting back into the shelf edge suggest ...
format Article in Journal/Newspaper
author Noormets, R.
Dowdeswell, J.A.
Larter, Robert D.
Ó Cofaigh, C.
Evans, J.
author_facet Noormets, R.
Dowdeswell, J.A.
Larter, Robert D.
Ó Cofaigh, C.
Evans, J.
author_sort Noormets, R.
title Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica
title_short Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica
title_full Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica
title_fullStr Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica
title_full_unstemmed Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica
title_sort morphology of the upper continental slope in the bellingshausen and amundsen seas - implications for sedimentary processes at the shelf edge of west antarctica
publisher Elsevier
publishDate 2009
url http://nora.nerc.ac.uk/id/eprint/11171/
https://doi.org/10.1016/j.margeo.2008.11.011
geographic West Antarctica
geographic_facet West Antarctica
genre Antarc*
Antarctica
Pine Island
Sea ice
West Antarctica
genre_facet Antarc*
Antarctica
Pine Island
Sea ice
West Antarctica
op_relation Noormets, R.; Dowdeswell, J.A.; Larter, Robert D. orcid:0000-0002-8414-7389
Ó Cofaigh, C.; Evans, J. 2009 Morphology of the upper continental slope in the Bellingshausen and Amundsen Seas - implications for sedimentary processes at the shelf edge of West Antarctica. Marine Geology, 258 (1-4). 100-114. https://doi.org/10.1016/j.margeo.2008.11.011 <https://doi.org/10.1016/j.margeo.2008.11.011>
op_doi https://doi.org/10.1016/j.margeo.2008.11.011
container_title Marine Geology
container_volume 258
container_issue 1-4
container_start_page 100
op_container_end_page 114
_version_ 1766214411421220864