Quaternary climate archives and proxy uncertainty

Understanding the dynamics of warm climate states has gained increasing importance in the face of anthropogenic climate change. During the Last Interglacial (LIG, ∼128 to 116 ka), greenhouse gas concentrations and high latitude insolation were higher than pre-industrial levels, causing a high-latitu...

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Main Authors: Lohmann, Gerrit, Wang, Xuezhu, Sutter, Johannes, Bagheri Dastgerdi, Saeid, Streffing, Jan, Stepanek, Christian, Hellmer, Hartmut, Felis, Thomas, Gierz, Paul, Brocas, William, Stein, Rüdiger
Format: Conference Object
Language:unknown
Published: Copernicus Publications 2018
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Online Access:https://epic.awi.de/id/eprint/46979/
https://meetingorganizer.copernicus.org/EGU2018/EGU2018-10987.pdf
https://hdl.handle.net/10013/epic.1011d11f-c5b2-4525-9723-5a62516c0fc9
id ftawi:oai:epic.awi.de:46979
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spelling ftawi:oai:epic.awi.de:46979 2024-09-15T17:41:47+00:00 Quaternary climate archives and proxy uncertainty Lohmann, Gerrit Wang, Xuezhu Sutter, Johannes Bagheri Dastgerdi, Saeid Streffing, Jan Stepanek, Christian Hellmer, Hartmut Felis, Thomas Gierz, Paul Brocas, William Stein, Rüdiger 2018 https://epic.awi.de/id/eprint/46979/ https://meetingorganizer.copernicus.org/EGU2018/EGU2018-10987.pdf https://hdl.handle.net/10013/epic.1011d11f-c5b2-4525-9723-5a62516c0fc9 unknown Copernicus Publications Lohmann, G. orcid:0000-0003-2089-733X , Wang, X. , Sutter, J. , Bagheri Dastgerdi, S. orcid:0000-0001-9253-8972 , Streffing, J. orcid:0000-0001-9515-3322 , Stepanek, C. orcid:0000-0002-3912-6271 , Hellmer, H. orcid:0000-0002-9357-9853 , Felis, T. , Gierz, P. orcid:0000-0002-4512-087X , Brocas, W. and Stein, R. orcid:0000-0002-4453-9564 (2018) Quaternary climate archives and proxy uncertainty , European Geosciences Union General Assembly 2018, Vienna, 8 April 2018 - 13 April 2018 . hdl:10013/epic.1011d11f-c5b2-4525-9723-5a62516c0fc9 EPIC3European Geosciences Union General Assembly 2018, Vienna, 2018-04-08-2018-04-13Copernicus Publications Conference notRev 2018 ftawi 2024-06-24T04:19:47Z Understanding the dynamics of warm climate states has gained increasing importance in the face of anthropogenic climate change. During the Last Interglacial (LIG, ∼128 to 116 ka), greenhouse gas concentrations and high latitude insolation were higher than pre-industrial levels, causing a high-latitude warming (Turney and Jones, 2010; Pfeiffer and Lohmann, 2016). We present a suite of climate model results (COSMOS, MPI-ESM, AWI-CM, EC-Earth) to evaluate the patterns and compare the simulations with the above-mentioned surface temperature reconstructions, seasonal archives (Felis et al., 2015; Brocas et al., 2017), and sea ice reconstructions (Stein et al., 2017). As a result of this modestly warmer climate, polar ice sheets were smaller and estimates report that the global mean sea level was 6-9 meters higher than today (Dutton et al., 2015). The sensitivity of the Antarctic Ice sheet is related to the local temperature around the West Antarctic Ice Sheet (WAIS) (Sutter et al., 2016). Our ice sheet model experiments indicate that a 2-3°C local warming causes already a partially collapsed, irreversible WAIS. A pronounced subsurface oceanic warming can destabilize the WAIS, resulting in an oceanic gateway between the Ross and Weddell Seas. A sensitivity study using the new oceanic gateway between the Atlantic and Pacific Oceans as a bathymetrical boundary condition indicates that this region would be covered by sea ice. Mixing due to sea-ice formation prevents a pronounced warming around the WAIS and would stabilize the WAIS. Thus, the disintegration of the WAIS is probably related to non-local influences like in Hellmer et al. (2017) where the shelves of West Antarctica are warmed from below by Circumpolar Deep Water. Conference Object Antarc* Antarctic Antarctica Ice Sheet Sea ice West Antarctica 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 Understanding the dynamics of warm climate states has gained increasing importance in the face of anthropogenic climate change. During the Last Interglacial (LIG, ∼128 to 116 ka), greenhouse gas concentrations and high latitude insolation were higher than pre-industrial levels, causing a high-latitude warming (Turney and Jones, 2010; Pfeiffer and Lohmann, 2016). We present a suite of climate model results (COSMOS, MPI-ESM, AWI-CM, EC-Earth) to evaluate the patterns and compare the simulations with the above-mentioned surface temperature reconstructions, seasonal archives (Felis et al., 2015; Brocas et al., 2017), and sea ice reconstructions (Stein et al., 2017). As a result of this modestly warmer climate, polar ice sheets were smaller and estimates report that the global mean sea level was 6-9 meters higher than today (Dutton et al., 2015). The sensitivity of the Antarctic Ice sheet is related to the local temperature around the West Antarctic Ice Sheet (WAIS) (Sutter et al., 2016). Our ice sheet model experiments indicate that a 2-3°C local warming causes already a partially collapsed, irreversible WAIS. A pronounced subsurface oceanic warming can destabilize the WAIS, resulting in an oceanic gateway between the Ross and Weddell Seas. A sensitivity study using the new oceanic gateway between the Atlantic and Pacific Oceans as a bathymetrical boundary condition indicates that this region would be covered by sea ice. Mixing due to sea-ice formation prevents a pronounced warming around the WAIS and would stabilize the WAIS. Thus, the disintegration of the WAIS is probably related to non-local influences like in Hellmer et al. (2017) where the shelves of West Antarctica are warmed from below by Circumpolar Deep Water.
format Conference Object
author Lohmann, Gerrit
Wang, Xuezhu
Sutter, Johannes
Bagheri Dastgerdi, Saeid
Streffing, Jan
Stepanek, Christian
Hellmer, Hartmut
Felis, Thomas
Gierz, Paul
Brocas, William
Stein, Rüdiger
spellingShingle Lohmann, Gerrit
Wang, Xuezhu
Sutter, Johannes
Bagheri Dastgerdi, Saeid
Streffing, Jan
Stepanek, Christian
Hellmer, Hartmut
Felis, Thomas
Gierz, Paul
Brocas, William
Stein, Rüdiger
Quaternary climate archives and proxy uncertainty
author_facet Lohmann, Gerrit
Wang, Xuezhu
Sutter, Johannes
Bagheri Dastgerdi, Saeid
Streffing, Jan
Stepanek, Christian
Hellmer, Hartmut
Felis, Thomas
Gierz, Paul
Brocas, William
Stein, Rüdiger
author_sort Lohmann, Gerrit
title Quaternary climate archives and proxy uncertainty
title_short Quaternary climate archives and proxy uncertainty
title_full Quaternary climate archives and proxy uncertainty
title_fullStr Quaternary climate archives and proxy uncertainty
title_full_unstemmed Quaternary climate archives and proxy uncertainty
title_sort quaternary climate archives and proxy uncertainty
publisher Copernicus Publications
publishDate 2018
url https://epic.awi.de/id/eprint/46979/
https://meetingorganizer.copernicus.org/EGU2018/EGU2018-10987.pdf
https://hdl.handle.net/10013/epic.1011d11f-c5b2-4525-9723-5a62516c0fc9
genre Antarc*
Antarctic
Antarctica
Ice Sheet
Sea ice
West Antarctica
genre_facet Antarc*
Antarctic
Antarctica
Ice Sheet
Sea ice
West Antarctica
op_source EPIC3European Geosciences Union General Assembly 2018, Vienna, 2018-04-08-2018-04-13Copernicus Publications
op_relation Lohmann, G. orcid:0000-0003-2089-733X , Wang, X. , Sutter, J. , Bagheri Dastgerdi, S. orcid:0000-0001-9253-8972 , Streffing, J. orcid:0000-0001-9515-3322 , Stepanek, C. orcid:0000-0002-3912-6271 , Hellmer, H. orcid:0000-0002-9357-9853 , Felis, T. , Gierz, P. orcid:0000-0002-4512-087X , Brocas, W. and Stein, R. orcid:0000-0002-4453-9564 (2018) Quaternary climate archives and proxy uncertainty , European Geosciences Union General Assembly 2018, Vienna, 8 April 2018 - 13 April 2018 . hdl:10013/epic.1011d11f-c5b2-4525-9723-5a62516c0fc9
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