Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history

The West Antarctic Ice Sheet (WAIS) has been subject to a very dynamic history as most of its base is grounded below present sea level and, thus, sensitive to climatic changes. Its collapse would result in a global sea-level rise of 3.4-5 m. The reconstruction and quantification of WAIS collapses in...

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Main Author: Gohl, Karsten
Format: Conference Object
Language:unknown
Published: 2022
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Online Access:https://epic.awi.de/id/eprint/57399/
https://hdl.handle.net/10013/epic.15aa2a18-cec8-4240-a270-0e003bda0e9a
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spelling ftawi:oai:epic.awi.de:57399 2024-09-15T17:38:57+00:00 Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history Gohl, Karsten 2022 https://epic.awi.de/id/eprint/57399/ https://hdl.handle.net/10013/epic.15aa2a18-cec8-4240-a270-0e003bda0e9a unknown Gohl, K. orcid:0000-0002-9558-2116 (2022) Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history , MagellanPlus Workshop: NorthGreen, Copenhagen, 21 November 2022 - 23 November 2022 . hdl:10013/epic.15aa2a18-cec8-4240-a270-0e003bda0e9a EPIC3MagellanPlus Workshop: NorthGreen, Copenhagen, 2022-11-21-2022-11-23 Conference NonPeerReviewed 2022 ftawi 2024-06-24T04:30:12Z The West Antarctic Ice Sheet (WAIS) has been subject to a very dynamic history as most of its base is grounded below present sea level and, thus, sensitive to climatic changes. Its collapse would result in a global sea-level rise of 3.4-5 m. The reconstruction and quantification of WAIS collapses in warm periods in the geological past will provide constraints required for ice sheet models predicting its future behaviour and resulting sea-level rise. The Amundsen Sea ice sheet drainage sector in particular has shown unusual rapid retreat and dramatic changes over the last decades, which has been suggested to be a precursor to the behaviour of the entire WAIS. The main objective during the RV Polarstern expedition PS104 in early 2017 was the application of the MARUM-MeBo70 seabed drilling system to recover a series of sediment cores at sites from the oldest to the youngest sedimentary sequences of the Amundsen Sea Embayment shelf. The expectation was that these cores provide sample material for proxy analyses required to reconstruct the development and past dynamics of the WAIS in the Amundsen Sea sector. A multi-barrel seabed drill rig was used for the first time to drill unconsolidated sediments and consolidated sedimentary rocks from an Antarctic shelf with core recoveries between 7 and 76%. We deployed the MARUM-MeBo70 drill device at nine drill sites in the Amundsen Sea Embayment. Three sites were located on the inner shelf of Pine Island Bay from which soft sediments, presumably deposited at high sedimentation rates in isolated small basins, were recovered from drill depths of up to 36 m below seafloor. Six sites were located on the middle shelf of the eastern and western embayment. Drilling at five of these sites recovered consolidated sediments and sedimentary rocks from dipping strata spanning ages from Late Cretaceous to Miocene. With IODP Expedition 379 in early 2019, we aimed to drill long cores on the shelf and rise of the Amundsen Sea to target in particular past warm periods of the Pliocene, Miocene ... Conference Object Amundsen Sea Antarc* Antarctic Ice Sheet Pine Island Bay Sea ice Alfred Wegener Institute for Polar- and Marine Research (AWI): ePIC (electronic Publication Information Center)
institution Open Polar
collection Alfred Wegener Institute for Polar- and Marine Research (AWI): ePIC (electronic Publication Information Center)
op_collection_id ftawi
language unknown
description The West Antarctic Ice Sheet (WAIS) has been subject to a very dynamic history as most of its base is grounded below present sea level and, thus, sensitive to climatic changes. Its collapse would result in a global sea-level rise of 3.4-5 m. The reconstruction and quantification of WAIS collapses in warm periods in the geological past will provide constraints required for ice sheet models predicting its future behaviour and resulting sea-level rise. The Amundsen Sea ice sheet drainage sector in particular has shown unusual rapid retreat and dramatic changes over the last decades, which has been suggested to be a precursor to the behaviour of the entire WAIS. The main objective during the RV Polarstern expedition PS104 in early 2017 was the application of the MARUM-MeBo70 seabed drilling system to recover a series of sediment cores at sites from the oldest to the youngest sedimentary sequences of the Amundsen Sea Embayment shelf. The expectation was that these cores provide sample material for proxy analyses required to reconstruct the development and past dynamics of the WAIS in the Amundsen Sea sector. A multi-barrel seabed drill rig was used for the first time to drill unconsolidated sediments and consolidated sedimentary rocks from an Antarctic shelf with core recoveries between 7 and 76%. We deployed the MARUM-MeBo70 drill device at nine drill sites in the Amundsen Sea Embayment. Three sites were located on the inner shelf of Pine Island Bay from which soft sediments, presumably deposited at high sedimentation rates in isolated small basins, were recovered from drill depths of up to 36 m below seafloor. Six sites were located on the middle shelf of the eastern and western embayment. Drilling at five of these sites recovered consolidated sediments and sedimentary rocks from dipping strata spanning ages from Late Cretaceous to Miocene. With IODP Expedition 379 in early 2019, we aimed to drill long cores on the shelf and rise of the Amundsen Sea to target in particular past warm periods of the Pliocene, Miocene ...
format Conference Object
author Gohl, Karsten
spellingShingle Gohl, Karsten
Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history
author_facet Gohl, Karsten
author_sort Gohl, Karsten
title Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history
title_short Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history
title_full Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history
title_fullStr Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history
title_full_unstemmed Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history
title_sort drilling in the amundsen sea and results on west antarctic paleoclimate and ice sheet history
publishDate 2022
url https://epic.awi.de/id/eprint/57399/
https://hdl.handle.net/10013/epic.15aa2a18-cec8-4240-a270-0e003bda0e9a
genre Amundsen Sea
Antarc*
Antarctic
Ice Sheet
Pine Island Bay
Sea ice
genre_facet Amundsen Sea
Antarc*
Antarctic
Ice Sheet
Pine Island Bay
Sea ice
op_source EPIC3MagellanPlus Workshop: NorthGreen, Copenhagen, 2022-11-21-2022-11-23
op_relation Gohl, K. orcid:0000-0002-9558-2116 (2022) Drilling in the Amundsen Sea and results on West Antarctic paleoclimate and ice sheet history , MagellanPlus Workshop: NorthGreen, Copenhagen, 21 November 2022 - 23 November 2022 . hdl:10013/epic.15aa2a18-cec8-4240-a270-0e003bda0e9a
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