Ice thinning, upstream advection, and non-climatic biases for the upper 89% of the EDML ice core from a nested model of the Antarctic ice sheet

A nested ice flow model was developed for eastern Dronning Maud Land to assist with the dating and interpretation of the EDML deep ice core. The model consists of a high-resolution higher-order ice dynamic flow model that was nested into a comprehensive 3-D thermomechanical model of the whole Antarc...

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Published in:Climate of the Past
Main Authors: Huybrechts, P., Rybak, O., Pattyn, F., Ruth, U., Steinhage, D.
Format: Text
Language:English
Published: 2018
Subjects:
Online Access:https://doi.org/10.5194/cp-3-577-2007
https://cp.copernicus.org/articles/3/577/2007/
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spelling ftcopernicus:oai:publications.copernicus.org:cp6270 2023-05-15T13:36:36+02:00 Ice thinning, upstream advection, and non-climatic biases for the upper 89% of the EDML ice core from a nested model of the Antarctic ice sheet Huybrechts, P. Rybak, O. Pattyn, F. Ruth, U. Steinhage, D. 2018-09-27 application/pdf https://doi.org/10.5194/cp-3-577-2007 https://cp.copernicus.org/articles/3/577/2007/ eng eng doi:10.5194/cp-3-577-2007 https://cp.copernicus.org/articles/3/577/2007/ eISSN: 1814-9332 Text 2018 ftcopernicus https://doi.org/10.5194/cp-3-577-2007 2020-07-20T16:27:01Z A nested ice flow model was developed for eastern Dronning Maud Land to assist with the dating and interpretation of the EDML deep ice core. The model consists of a high-resolution higher-order ice dynamic flow model that was nested into a comprehensive 3-D thermomechanical model of the whole Antarctic ice sheet. As the drill site is on a flank position the calculations specifically take into account the effects of horizontal advection as deeper ice in the core originated from higher inland. First the regional velocity field and ice sheet geometry is obtained from a forward experiment over the last 8 glacial cycles. The result is subsequently employed in a Lagrangian backtracing algorithm to provide particle paths back to their time and place of deposition. The procedure directly yields the depth-age distribution, surface conditions at particle origin, and a suite of relevant parameters such as initial annual layer thickness. This paper discusses the method and the main results of the experiment, including the ice core chronology, the non-climatic corrections needed to extract the climatic part of the signal, and the thinning function. The focus is on the upper 89% of the ice core (appr. 170 kyears) as the dating below that is increasingly less robust owing to the unknown value of the geothermal heat flux. It is found that the temperature biases resulting from variations of surface elevation are up to half of the magnitude of the climatic changes themselves. Text Antarc* Antarctic Dronning Maud Land ice core Ice Sheet Copernicus Publications: E-Journals Antarctic Dronning Maud Land The Antarctic Climate of the Past 3 4 577 589
institution Open Polar
collection Copernicus Publications: E-Journals
op_collection_id ftcopernicus
language English
description A nested ice flow model was developed for eastern Dronning Maud Land to assist with the dating and interpretation of the EDML deep ice core. The model consists of a high-resolution higher-order ice dynamic flow model that was nested into a comprehensive 3-D thermomechanical model of the whole Antarctic ice sheet. As the drill site is on a flank position the calculations specifically take into account the effects of horizontal advection as deeper ice in the core originated from higher inland. First the regional velocity field and ice sheet geometry is obtained from a forward experiment over the last 8 glacial cycles. The result is subsequently employed in a Lagrangian backtracing algorithm to provide particle paths back to their time and place of deposition. The procedure directly yields the depth-age distribution, surface conditions at particle origin, and a suite of relevant parameters such as initial annual layer thickness. This paper discusses the method and the main results of the experiment, including the ice core chronology, the non-climatic corrections needed to extract the climatic part of the signal, and the thinning function. The focus is on the upper 89% of the ice core (appr. 170 kyears) as the dating below that is increasingly less robust owing to the unknown value of the geothermal heat flux. It is found that the temperature biases resulting from variations of surface elevation are up to half of the magnitude of the climatic changes themselves.
format Text
author Huybrechts, P.
Rybak, O.
Pattyn, F.
Ruth, U.
Steinhage, D.
spellingShingle Huybrechts, P.
Rybak, O.
Pattyn, F.
Ruth, U.
Steinhage, D.
Ice thinning, upstream advection, and non-climatic biases for the upper 89% of the EDML ice core from a nested model of the Antarctic ice sheet
author_facet Huybrechts, P.
Rybak, O.
Pattyn, F.
Ruth, U.
Steinhage, D.
author_sort Huybrechts, P.
title Ice thinning, upstream advection, and non-climatic biases for the upper 89% of the EDML ice core from a nested model of the Antarctic ice sheet
title_short Ice thinning, upstream advection, and non-climatic biases for the upper 89% of the EDML ice core from a nested model of the Antarctic ice sheet
title_full Ice thinning, upstream advection, and non-climatic biases for the upper 89% of the EDML ice core from a nested model of the Antarctic ice sheet
title_fullStr Ice thinning, upstream advection, and non-climatic biases for the upper 89% of the EDML ice core from a nested model of the Antarctic ice sheet
title_full_unstemmed Ice thinning, upstream advection, and non-climatic biases for the upper 89% of the EDML ice core from a nested model of the Antarctic ice sheet
title_sort ice thinning, upstream advection, and non-climatic biases for the upper 89% of the edml ice core from a nested model of the antarctic ice sheet
publishDate 2018
url https://doi.org/10.5194/cp-3-577-2007
https://cp.copernicus.org/articles/3/577/2007/
geographic Antarctic
Dronning Maud Land
The Antarctic
geographic_facet Antarctic
Dronning Maud Land
The Antarctic
genre Antarc*
Antarctic
Dronning Maud Land
ice core
Ice Sheet
genre_facet Antarc*
Antarctic
Dronning Maud Land
ice core
Ice Sheet
op_source eISSN: 1814-9332
op_relation doi:10.5194/cp-3-577-2007
https://cp.copernicus.org/articles/3/577/2007/
op_doi https://doi.org/10.5194/cp-3-577-2007
container_title Climate of the Past
container_volume 3
container_issue 4
container_start_page 577
op_container_end_page 589
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