Antarctic ice volume and deep-sea temperature during the last 50 Myr: a model study

A simple quasi-analytical model is used to study the sensitivity of the Antarctic ice sheet to climate change. The model is axisymmetrical and has a profile that only depends on the ice-sheet radius. The climatic conditions are represented by three parameters: the altitude of the runoff line, the ac...

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Main Author: Oerlemans, J.
Format: Article in Journal/Newspaper
Language:English
Published: 2004
Subjects:
Online Access:https://dspace.library.uu.nl/handle/1874/22691
id ftunivutrecht:oai:dspace.library.uu.nl:1874/22691
record_format openpolar
spelling ftunivutrecht:oai:dspace.library.uu.nl:1874/22691 2023-07-23T04:14:01+02:00 Antarctic ice volume and deep-sea temperature during the last 50 Myr: a model study Oerlemans, J. 2004-06 image/pdf https://dspace.library.uu.nl/handle/1874/22691 en eng 1727-5644 Online 0260-3055 Print https://dspace.library.uu.nl/handle/1874/22691 info:eu-repo/semantics/ClosedAccess Natuur- en Sterrenkunde Article 2004 ftunivutrecht 2023-07-01T23:21:32Z A simple quasi-analytical model is used to study the sensitivity of the Antarctic ice sheet to climate change. The model is axisymmetrical and has a profile that only depends on the ice-sheet radius. The climatic conditions are represented by three parameters: the altitude of the runoff line, the accumulation rate above the runoff line, and the balance gradient below the runoff line. The ice sheet may extend into the sea. At the grounding line the ice velocity is assumed to be proportional to the water depth. For this set-up, an explicit algebraic expression for the total mass budget of the ice sheet can be derived. After calibration of the model with respect to the present-day ice sheet, equilibrium states are studied for a wide range of temperatures. The model predicts a maximum ice volume (+3.4%) for a temperature that is 2.5 K above the present value. For a temperature increase of 7 K, mass loss by runoff and calving are about the same. In this case the ice volume is about 82% of the current value. The ice-sheet model is used to correct the Cenozoic deep-sea temperature record (δ 18O record from benthic foraminifera in ocean sediments) for Antarctic ice volume. The model is forced with the oxygen isotope record, which is then corrected for the calculated ice volume. Therefore, the resulting deep-sea temperature and Antarctic ice-volume curves are mutually consistent. It is concluded that for the last 35_106 years the δ 18O record truly is a mixed temperature/ice-volume record, in which the contributions from these parameters have the same order of magnitude. Article in Journal/Newspaper Antarc* Antarctic Ice Sheet Utrecht University Repository Antarctic The Antarctic
institution Open Polar
collection Utrecht University Repository
op_collection_id ftunivutrecht
language English
topic Natuur- en Sterrenkunde
spellingShingle Natuur- en Sterrenkunde
Oerlemans, J.
Antarctic ice volume and deep-sea temperature during the last 50 Myr: a model study
topic_facet Natuur- en Sterrenkunde
description A simple quasi-analytical model is used to study the sensitivity of the Antarctic ice sheet to climate change. The model is axisymmetrical and has a profile that only depends on the ice-sheet radius. The climatic conditions are represented by three parameters: the altitude of the runoff line, the accumulation rate above the runoff line, and the balance gradient below the runoff line. The ice sheet may extend into the sea. At the grounding line the ice velocity is assumed to be proportional to the water depth. For this set-up, an explicit algebraic expression for the total mass budget of the ice sheet can be derived. After calibration of the model with respect to the present-day ice sheet, equilibrium states are studied for a wide range of temperatures. The model predicts a maximum ice volume (+3.4%) for a temperature that is 2.5 K above the present value. For a temperature increase of 7 K, mass loss by runoff and calving are about the same. In this case the ice volume is about 82% of the current value. The ice-sheet model is used to correct the Cenozoic deep-sea temperature record (δ 18O record from benthic foraminifera in ocean sediments) for Antarctic ice volume. The model is forced with the oxygen isotope record, which is then corrected for the calculated ice volume. Therefore, the resulting deep-sea temperature and Antarctic ice-volume curves are mutually consistent. It is concluded that for the last 35_106 years the δ 18O record truly is a mixed temperature/ice-volume record, in which the contributions from these parameters have the same order of magnitude.
format Article in Journal/Newspaper
author Oerlemans, J.
author_facet Oerlemans, J.
author_sort Oerlemans, J.
title Antarctic ice volume and deep-sea temperature during the last 50 Myr: a model study
title_short Antarctic ice volume and deep-sea temperature during the last 50 Myr: a model study
title_full Antarctic ice volume and deep-sea temperature during the last 50 Myr: a model study
title_fullStr Antarctic ice volume and deep-sea temperature during the last 50 Myr: a model study
title_full_unstemmed Antarctic ice volume and deep-sea temperature during the last 50 Myr: a model study
title_sort antarctic ice volume and deep-sea temperature during the last 50 myr: a model study
publishDate 2004
url https://dspace.library.uu.nl/handle/1874/22691
geographic Antarctic
The Antarctic
geographic_facet Antarctic
The Antarctic
genre Antarc*
Antarctic
Ice Sheet
genre_facet Antarc*
Antarctic
Ice Sheet
op_relation 1727-5644 Online
0260-3055 Print
https://dspace.library.uu.nl/handle/1874/22691
op_rights info:eu-repo/semantics/ClosedAccess
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