GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections

Global-scale 21st-century glacier mass change projections from six published global glacier models are systematically compared as part of the Glacier Model Intercomparison Project. In total 214 projections of annual glacier mass and area forced by 25 General Circulation Models (GCMs) and four Repres...

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Published in:Journal of Glaciology
Main Authors: Hock, R., Bliss, A., Marzeion, B., Giesen, R.H., Hirabayashi, Y., Huss, M., Radic, V., Slangen, A.B.A.
Format: Article in Journal/Newspaper
Language:English
Published: 2019
Subjects:
Online Access:https://www.vliz.be/imisdocs/publications/84/330584.pdf
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spelling ftnioz:oai:imis.nioz.nl:312113 2023-05-15T13:47:57+02:00 GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections Hock, R. Bliss, A. Marzeion, B. Giesen, R.H. Hirabayashi, Y. Huss, M. Radic, V. Slangen, A.B.A. 2019 application/pdf https://www.vliz.be/imisdocs/publications/84/330584.pdf en eng info:eu-repo/semantics/altIdentifier/wos/000470734900008 info:eu-repo/semantics/altIdentifier/doi/doi.org/10.1017/jog.2019.22 https://www.vliz.be/imisdocs/publications/84/330584.pdf info:eu-repo/semantics/openAccess %3Ci%3EJ.+Glaciol.+65%28251%29%3C%2Fi%3E%3A+453-467.+%3Ca+href%3D%22https%3A%2F%2Fdx.doi.org%2F10.1017%2Fjog.2019.22%22+target%3D%22_blank%22%3Ehttps%3A%2F%2Fdx.doi.org%2F10.1017%2Fjog.2019.22%3C%2Fa%3E info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2019 ftnioz https://doi.org/10.1017/jog.2019.22 2022-05-01T14:10:11Z Global-scale 21st-century glacier mass change projections from six published global glacier models are systematically compared as part of the Glacier Model Intercomparison Project. In total 214 projections of annual glacier mass and area forced by 25 General Circulation Models (GCMs) and four Representative Concentration Pathways (RCP) emission scenarios and aggregated into 19 glacier regions are considered. Global mass loss of all glaciers (outside the Antarctic and Greenland ice sheets) by 2100 relative to 2015 averaged over all model runs varies from 18 ± 7% (RCP2.6) to 36 ± 11% (RCP8.5) corresponding to 94 ± 25 and 200 ± 44 mm sea-level equivalent (SLE), respectively. Regional relative mass changes by 2100 correlate linearly with relative area changes. For RCP8.5 three models project global rates of mass loss (multi-GCM means) of >3 mm SLE per year towards the end of the century. Projections vary considerably between regions, and also among the glacier models. Global glacier mass changes per degree global air temperature rise tend to increase with more pronounced warming indicating that mass-balance sensitivities to temperature change are not constant. Differences in glacier mass projections among the models are attributed to differences in model physics, calibration and downscaling procedures, initial ice volumes and varying ensembles of forcing GCMs. Article in Journal/Newspaper Antarc* Antarctic glacier Greenland NIOZ Repository (Royal Netherlands Institute for Sea Research) Antarctic Greenland The Antarctic Journal of Glaciology 65 251 453 467
institution Open Polar
collection NIOZ Repository (Royal Netherlands Institute for Sea Research)
op_collection_id ftnioz
language English
description Global-scale 21st-century glacier mass change projections from six published global glacier models are systematically compared as part of the Glacier Model Intercomparison Project. In total 214 projections of annual glacier mass and area forced by 25 General Circulation Models (GCMs) and four Representative Concentration Pathways (RCP) emission scenarios and aggregated into 19 glacier regions are considered. Global mass loss of all glaciers (outside the Antarctic and Greenland ice sheets) by 2100 relative to 2015 averaged over all model runs varies from 18 ± 7% (RCP2.6) to 36 ± 11% (RCP8.5) corresponding to 94 ± 25 and 200 ± 44 mm sea-level equivalent (SLE), respectively. Regional relative mass changes by 2100 correlate linearly with relative area changes. For RCP8.5 three models project global rates of mass loss (multi-GCM means) of >3 mm SLE per year towards the end of the century. Projections vary considerably between regions, and also among the glacier models. Global glacier mass changes per degree global air temperature rise tend to increase with more pronounced warming indicating that mass-balance sensitivities to temperature change are not constant. Differences in glacier mass projections among the models are attributed to differences in model physics, calibration and downscaling procedures, initial ice volumes and varying ensembles of forcing GCMs.
format Article in Journal/Newspaper
author Hock, R.
Bliss, A.
Marzeion, B.
Giesen, R.H.
Hirabayashi, Y.
Huss, M.
Radic, V.
Slangen, A.B.A.
spellingShingle Hock, R.
Bliss, A.
Marzeion, B.
Giesen, R.H.
Hirabayashi, Y.
Huss, M.
Radic, V.
Slangen, A.B.A.
GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections
author_facet Hock, R.
Bliss, A.
Marzeion, B.
Giesen, R.H.
Hirabayashi, Y.
Huss, M.
Radic, V.
Slangen, A.B.A.
author_sort Hock, R.
title GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections
title_short GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections
title_full GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections
title_fullStr GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections
title_full_unstemmed GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections
title_sort glaciermip – a model intercomparison of global-scale glacier mass-balance models and projections
publishDate 2019
url https://www.vliz.be/imisdocs/publications/84/330584.pdf
geographic Antarctic
Greenland
The Antarctic
geographic_facet Antarctic
Greenland
The Antarctic
genre Antarc*
Antarctic
glacier
Greenland
genre_facet Antarc*
Antarctic
glacier
Greenland
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container_title Journal of Glaciology
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container_issue 251
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