An Empirical Estimate of Post-LGM Grounding-Event Duration in Eastern Ross Sea: Implications from a Comparison with Constraints from New Radiocarbon Dates

The West Antarctic Ice Sheet (WAIS) advanced to the outer shelf during the Last Glacial Maximum (LGM) before beginning a rapid retreat to the inner shelf. In the Whales Deep paleo-ice-stream trough, subsurface and geomorphologic evidence shows that grounding-line retreat was interrupted by at least...

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Main Author: Krogmeier, Benjamin
Format: Text
Language:unknown
Published: LSU Digital Commons 2016
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Online Access:https://digitalcommons.lsu.edu/gradschool_theses/2275
https://doi.org/10.31390/gradschool_theses.2275
https://digitalcommons.lsu.edu/context/gradschool_theses/article/3274/viewcontent/uc.pdf
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spelling ftlouisianastuir:oai:digitalcommons.lsu.edu:gradschool_theses-3274 2023-06-11T04:06:22+02:00 An Empirical Estimate of Post-LGM Grounding-Event Duration in Eastern Ross Sea: Implications from a Comparison with Constraints from New Radiocarbon Dates Krogmeier, Benjamin 2016-01-01T08:00:00Z application/pdf https://digitalcommons.lsu.edu/gradschool_theses/2275 https://doi.org/10.31390/gradschool_theses.2275 https://digitalcommons.lsu.edu/context/gradschool_theses/article/3274/viewcontent/uc.pdf unknown LSU Digital Commons https://digitalcommons.lsu.edu/gradschool_theses/2275 doi:10.31390/gradschool_theses.2275 https://digitalcommons.lsu.edu/context/gradschool_theses/article/3274/viewcontent/uc.pdf LSU Master's Theses Antarctic Ice Sheet Ross Sea Retreat Sediment Flux Earth Sciences text 2016 ftlouisianastuir https://doi.org/10.31390/gradschool_theses.2275 2023-05-28T19:01:56Z The West Antarctic Ice Sheet (WAIS) advanced to the outer shelf during the Last Glacial Maximum (LGM) before beginning a rapid retreat to the inner shelf. In the Whales Deep paleo-ice-stream trough, subsurface and geomorphologic evidence shows that grounding-line retreat was interrupted by at least five pauses in the area between the shelf edge and the middle shelf. During the pauses, an overlapping cluster of backstepped grounding zone wedges (GZWs) was deposited. Each GZW represents a grounding event, i.e., a time interval during which the grounding-line position was relatively stable. Seismic correlation and isopach mapping show that the cluster has a total volume of 5.34 x 1011 m3. Based on our estimate of modern deformation-till flux at Bindschadler Ice Stream, we infer that when the WAIS was grounded at the middle shelf, the paleo-sediment flux would have been as high as ~5.36 x 108 m3a-1. Using this paleo flux, the middle-shelf grounding events would have had a duration of ~995 ± 493 years. In contrasts, radiocarbon dates show that the middle-shelf grounding events had a duration of at least 3200 years. The comparison shows that in the absence of radiocarbon control, our empirical approach provides a reasonable first-order estimate of grounding event duration. Text Antarc* Antarctic Bindschadler Ice Stream Ice Sheet Ross Sea LSU Digital Commons (Louisiana State University) Antarctic Bindschadler Ice Stream ENVELOPE(-142.000,-142.000,-81.000,-81.000) Ross Sea West Antarctic Ice Sheet
institution Open Polar
collection LSU Digital Commons (Louisiana State University)
op_collection_id ftlouisianastuir
language unknown
topic Antarctic Ice Sheet
Ross Sea
Retreat
Sediment Flux
Earth Sciences
spellingShingle Antarctic Ice Sheet
Ross Sea
Retreat
Sediment Flux
Earth Sciences
Krogmeier, Benjamin
An Empirical Estimate of Post-LGM Grounding-Event Duration in Eastern Ross Sea: Implications from a Comparison with Constraints from New Radiocarbon Dates
topic_facet Antarctic Ice Sheet
Ross Sea
Retreat
Sediment Flux
Earth Sciences
description The West Antarctic Ice Sheet (WAIS) advanced to the outer shelf during the Last Glacial Maximum (LGM) before beginning a rapid retreat to the inner shelf. In the Whales Deep paleo-ice-stream trough, subsurface and geomorphologic evidence shows that grounding-line retreat was interrupted by at least five pauses in the area between the shelf edge and the middle shelf. During the pauses, an overlapping cluster of backstepped grounding zone wedges (GZWs) was deposited. Each GZW represents a grounding event, i.e., a time interval during which the grounding-line position was relatively stable. Seismic correlation and isopach mapping show that the cluster has a total volume of 5.34 x 1011 m3. Based on our estimate of modern deformation-till flux at Bindschadler Ice Stream, we infer that when the WAIS was grounded at the middle shelf, the paleo-sediment flux would have been as high as ~5.36 x 108 m3a-1. Using this paleo flux, the middle-shelf grounding events would have had a duration of ~995 ± 493 years. In contrasts, radiocarbon dates show that the middle-shelf grounding events had a duration of at least 3200 years. The comparison shows that in the absence of radiocarbon control, our empirical approach provides a reasonable first-order estimate of grounding event duration.
format Text
author Krogmeier, Benjamin
author_facet Krogmeier, Benjamin
author_sort Krogmeier, Benjamin
title An Empirical Estimate of Post-LGM Grounding-Event Duration in Eastern Ross Sea: Implications from a Comparison with Constraints from New Radiocarbon Dates
title_short An Empirical Estimate of Post-LGM Grounding-Event Duration in Eastern Ross Sea: Implications from a Comparison with Constraints from New Radiocarbon Dates
title_full An Empirical Estimate of Post-LGM Grounding-Event Duration in Eastern Ross Sea: Implications from a Comparison with Constraints from New Radiocarbon Dates
title_fullStr An Empirical Estimate of Post-LGM Grounding-Event Duration in Eastern Ross Sea: Implications from a Comparison with Constraints from New Radiocarbon Dates
title_full_unstemmed An Empirical Estimate of Post-LGM Grounding-Event Duration in Eastern Ross Sea: Implications from a Comparison with Constraints from New Radiocarbon Dates
title_sort empirical estimate of post-lgm grounding-event duration in eastern ross sea: implications from a comparison with constraints from new radiocarbon dates
publisher LSU Digital Commons
publishDate 2016
url https://digitalcommons.lsu.edu/gradschool_theses/2275
https://doi.org/10.31390/gradschool_theses.2275
https://digitalcommons.lsu.edu/context/gradschool_theses/article/3274/viewcontent/uc.pdf
long_lat ENVELOPE(-142.000,-142.000,-81.000,-81.000)
geographic Antarctic
Bindschadler Ice Stream
Ross Sea
West Antarctic Ice Sheet
geographic_facet Antarctic
Bindschadler Ice Stream
Ross Sea
West Antarctic Ice Sheet
genre Antarc*
Antarctic
Bindschadler Ice Stream
Ice Sheet
Ross Sea
genre_facet Antarc*
Antarctic
Bindschadler Ice Stream
Ice Sheet
Ross Sea
op_source LSU Master's Theses
op_relation https://digitalcommons.lsu.edu/gradschool_theses/2275
doi:10.31390/gradschool_theses.2275
https://digitalcommons.lsu.edu/context/gradschool_theses/article/3274/viewcontent/uc.pdf
op_doi https://doi.org/10.31390/gradschool_theses.2275
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