Antarctic ice sheet response to sudden and sustained ice-shelf collapse (ABUMIP)
Antarctica's ice shelves modulate the grounded ice flow, and weakening of ice shelves due to climate forcing will decrease their ‘buttressing’ effect, causing a response in the grounded ice. While the processes governing ice-shelf weakening are complex, uncertainties in the response of the grou...
Published in: | Journal of Glaciology |
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Online Access: | http://www.osti.gov/servlets/purl/1695717 https://www.osti.gov/biblio/1695717 https://doi.org/10.1017/jog.2020.67 |
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ftosti:oai:osti.gov:1695717 2023-07-30T03:57:47+02:00 Antarctic ice sheet response to sudden and sustained ice-shelf collapse (ABUMIP) Sun, Sainan Pattyn, Frank Simon, Erika G. Albrecht, Torsten Cornford, Stephen Calov, Reinhard Dumas, Christophe Gillet-Chaulet, Fabien Goelzer, Heiko Golledge, Nicholas R. Greve, Ralf Hoffman, Matthew J. Humbert, Angelika Kazmierczak, Elise Kleiner, Thomas Leguy, Gunter R. Lipscomb, William H. Martin, Daniel Morlighem, Mathieu Nowicki, Sophie Pollard, David Price, Stephen Quiquet, Aurélien Seroussi, Hélène Schlemm, Tanja Sutter, Johannes van de Wal, Roderik W. Winkelmann, Ricarda Zhang, Tong 2023-07-03 application/pdf http://www.osti.gov/servlets/purl/1695717 https://www.osti.gov/biblio/1695717 https://doi.org/10.1017/jog.2020.67 unknown http://www.osti.gov/servlets/purl/1695717 https://www.osti.gov/biblio/1695717 https://doi.org/10.1017/jog.2020.67 doi:10.1017/jog.2020.67 54 ENVIRONMENTAL SCIENCES 2023 ftosti https://doi.org/10.1017/jog.2020.67 2023-07-11T09:51:28Z Antarctica's ice shelves modulate the grounded ice flow, and weakening of ice shelves due to climate forcing will decrease their ‘buttressing’ effect, causing a response in the grounded ice. While the processes governing ice-shelf weakening are complex, uncertainties in the response of the grounded ice sheet are also difficult to assess. The Antarctic BUttressing Model Intercomparison Project (ABUMIP) compares ice-sheet model responses to decrease in buttressing by investigating the ‘end-member’ scenario of total and sustained loss of ice shelves. Although unrealistic, this scenario enables gauging the sensitivity of an ensemble of 15 ice-sheet models to a total loss of buttressing, hence exhibiting the full potential of marine ice-sheet instability. All models predict that this scenario leads to multi-metre (1–12 m) sea-level rise over 500 years from present day. West Antarctic ice sheet collapse alone leads to a 1.91–5.08 m sea-level rise due to the marine ice-sheet instability. Mass loss rates are a strong function of the sliding/friction law, with plastic laws cause a further destabilization of the Aurora and Wilkes Subglacial Basins, East Antarctica. Improvements to marine ice-sheet models have greatly reduced variability between modelled ice-sheet responses to extreme ice-shelf loss, e.g. compared to the SeaRISE assessments. Other/Unknown Material Antarc* Antarctic Antarctica East Antarctica Ice Sheet Ice Shelf Ice Shelves SciTec Connect (Office of Scientific and Technical Information - OSTI, U.S. Department of Energy) Antarctic The Antarctic East Antarctica West Antarctic Ice Sheet Journal of Glaciology 66 260 891 904 |
institution |
Open Polar |
collection |
SciTec Connect (Office of Scientific and Technical Information - OSTI, U.S. Department of Energy) |
op_collection_id |
ftosti |
language |
unknown |
topic |
54 ENVIRONMENTAL SCIENCES |
spellingShingle |
54 ENVIRONMENTAL SCIENCES Sun, Sainan Pattyn, Frank Simon, Erika G. Albrecht, Torsten Cornford, Stephen Calov, Reinhard Dumas, Christophe Gillet-Chaulet, Fabien Goelzer, Heiko Golledge, Nicholas R. Greve, Ralf Hoffman, Matthew J. Humbert, Angelika Kazmierczak, Elise Kleiner, Thomas Leguy, Gunter R. Lipscomb, William H. Martin, Daniel Morlighem, Mathieu Nowicki, Sophie Pollard, David Price, Stephen Quiquet, Aurélien Seroussi, Hélène Schlemm, Tanja Sutter, Johannes van de Wal, Roderik W. Winkelmann, Ricarda Zhang, Tong Antarctic ice sheet response to sudden and sustained ice-shelf collapse (ABUMIP) |
topic_facet |
54 ENVIRONMENTAL SCIENCES |
description |
Antarctica's ice shelves modulate the grounded ice flow, and weakening of ice shelves due to climate forcing will decrease their ‘buttressing’ effect, causing a response in the grounded ice. While the processes governing ice-shelf weakening are complex, uncertainties in the response of the grounded ice sheet are also difficult to assess. The Antarctic BUttressing Model Intercomparison Project (ABUMIP) compares ice-sheet model responses to decrease in buttressing by investigating the ‘end-member’ scenario of total and sustained loss of ice shelves. Although unrealistic, this scenario enables gauging the sensitivity of an ensemble of 15 ice-sheet models to a total loss of buttressing, hence exhibiting the full potential of marine ice-sheet instability. All models predict that this scenario leads to multi-metre (1–12 m) sea-level rise over 500 years from present day. West Antarctic ice sheet collapse alone leads to a 1.91–5.08 m sea-level rise due to the marine ice-sheet instability. Mass loss rates are a strong function of the sliding/friction law, with plastic laws cause a further destabilization of the Aurora and Wilkes Subglacial Basins, East Antarctica. Improvements to marine ice-sheet models have greatly reduced variability between modelled ice-sheet responses to extreme ice-shelf loss, e.g. compared to the SeaRISE assessments. |
author |
Sun, Sainan Pattyn, Frank Simon, Erika G. Albrecht, Torsten Cornford, Stephen Calov, Reinhard Dumas, Christophe Gillet-Chaulet, Fabien Goelzer, Heiko Golledge, Nicholas R. Greve, Ralf Hoffman, Matthew J. Humbert, Angelika Kazmierczak, Elise Kleiner, Thomas Leguy, Gunter R. Lipscomb, William H. Martin, Daniel Morlighem, Mathieu Nowicki, Sophie Pollard, David Price, Stephen Quiquet, Aurélien Seroussi, Hélène Schlemm, Tanja Sutter, Johannes van de Wal, Roderik W. Winkelmann, Ricarda Zhang, Tong |
author_facet |
Sun, Sainan Pattyn, Frank Simon, Erika G. Albrecht, Torsten Cornford, Stephen Calov, Reinhard Dumas, Christophe Gillet-Chaulet, Fabien Goelzer, Heiko Golledge, Nicholas R. Greve, Ralf Hoffman, Matthew J. Humbert, Angelika Kazmierczak, Elise Kleiner, Thomas Leguy, Gunter R. Lipscomb, William H. Martin, Daniel Morlighem, Mathieu Nowicki, Sophie Pollard, David Price, Stephen Quiquet, Aurélien Seroussi, Hélène Schlemm, Tanja Sutter, Johannes van de Wal, Roderik W. Winkelmann, Ricarda Zhang, Tong |
author_sort |
Sun, Sainan |
title |
Antarctic ice sheet response to sudden and sustained ice-shelf collapse (ABUMIP) |
title_short |
Antarctic ice sheet response to sudden and sustained ice-shelf collapse (ABUMIP) |
title_full |
Antarctic ice sheet response to sudden and sustained ice-shelf collapse (ABUMIP) |
title_fullStr |
Antarctic ice sheet response to sudden and sustained ice-shelf collapse (ABUMIP) |
title_full_unstemmed |
Antarctic ice sheet response to sudden and sustained ice-shelf collapse (ABUMIP) |
title_sort |
antarctic ice sheet response to sudden and sustained ice-shelf collapse (abumip) |
publishDate |
2023 |
url |
http://www.osti.gov/servlets/purl/1695717 https://www.osti.gov/biblio/1695717 https://doi.org/10.1017/jog.2020.67 |
geographic |
Antarctic The Antarctic East Antarctica West Antarctic Ice Sheet |
geographic_facet |
Antarctic The Antarctic East Antarctica West Antarctic Ice Sheet |
genre |
Antarc* Antarctic Antarctica East Antarctica Ice Sheet Ice Shelf Ice Shelves |
genre_facet |
Antarc* Antarctic Antarctica East Antarctica Ice Sheet Ice Shelf Ice Shelves |
op_relation |
http://www.osti.gov/servlets/purl/1695717 https://www.osti.gov/biblio/1695717 https://doi.org/10.1017/jog.2020.67 doi:10.1017/jog.2020.67 |
op_doi |
https://doi.org/10.1017/jog.2020.67 |
container_title |
Journal of Glaciology |
container_volume |
66 |
container_issue |
260 |
container_start_page |
891 |
op_container_end_page |
904 |
_version_ |
1772819312249143296 |