The land ice contribution to sea level during the satellite era

Since 1992, there has been a revolution in our ability to quantify the land ice contribution to SLR using a variety of satellite missions and technologies. Each mission has provided unique, but sometimes conflicting, insights into the mass trends of land ice. Over the last decade, over fifty estimat...

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Main Authors: Bamber, Jonathan L., Westaway, Richard, Marzeion, Ben, Wouters, B.
Other Authors: Sub Dynamics Meteorology, Marine and Atmospheric Research
Format: Article in Journal/Newspaper
Language:English
Published: 2018
Subjects:
Online Access:https://dspace.library.uu.nl/handle/1874/364766
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spelling ftunivutrecht:oai:dspace.library.uu.nl:1874/364766 2023-07-23T04:15:15+02:00 The land ice contribution to sea level during the satellite era Bamber, Jonathan L. Westaway, Richard Marzeion, Ben Wouters, B. Sub Dynamics Meteorology Marine and Atmospheric Research 2018-06-19 image/pdf https://dspace.library.uu.nl/handle/1874/364766 en eng 1748-9326 https://dspace.library.uu.nl/handle/1874/364766 info:eu-repo/semantics/OpenAccess Article 2018 ftunivutrecht 2023-07-02T02:27:45Z Since 1992, there has been a revolution in our ability to quantify the land ice contribution to SLR using a variety of satellite missions and technologies. Each mission has provided unique, but sometimes conflicting, insights into the mass trends of land ice. Over the last decade, over fifty estimates of land ice trends have been published, providing a confusing and often inconsistent picture. The IPCC Fifth Assessment Report (AR5) attempted to synthesise estimates published up to early 2013. Since then, considerable advances have been made in understanding the origin of the inconsistencies, reducing uncertainties in estimates and extending time series. We assess and synthesise results published, primarily, since the AR5, to produce a consistent estimate of land ice mass trends during the satellite era (1992 to 2016). We combine observations from multiple missions and approaches including sea level budget analyses. Our resulting synthesis is both consistent and rigorous, drawing on i) the published literature, ii) expert assessment of that literature, and iii) a new analysis of Arctic glacier and ice cap trends combined with statistical modelling. We present annual and pentad (five-year mean) time series for the East, West Antarctic and Greenland Ice Sheets and glaciers separately and combined. When averaged over pentads, covering the entire period considered, we obtain a monotonic trend in mass contribution to the oceans, increasing from 0.31±0.35 mm of sea level equivalent for 1992-1996 to 1.85±0.13 for 2012-2016. Our integrated land ice trend is lower than many estimates of GRACE-derived ocean mass change for the same periods. This is due, in part, to a smaller estimate for glacier and ice cap mass trends compared to previous assessments. We discuss this, and other likely reasons, for the difference between GRACE ocean mass and land ice trends. Article in Journal/Newspaper Antarc* Antarctic Arctic glacier Greenland Ice cap Utrecht University Repository Antarctic Arctic Greenland
institution Open Polar
collection Utrecht University Repository
op_collection_id ftunivutrecht
language English
description Since 1992, there has been a revolution in our ability to quantify the land ice contribution to SLR using a variety of satellite missions and technologies. Each mission has provided unique, but sometimes conflicting, insights into the mass trends of land ice. Over the last decade, over fifty estimates of land ice trends have been published, providing a confusing and often inconsistent picture. The IPCC Fifth Assessment Report (AR5) attempted to synthesise estimates published up to early 2013. Since then, considerable advances have been made in understanding the origin of the inconsistencies, reducing uncertainties in estimates and extending time series. We assess and synthesise results published, primarily, since the AR5, to produce a consistent estimate of land ice mass trends during the satellite era (1992 to 2016). We combine observations from multiple missions and approaches including sea level budget analyses. Our resulting synthesis is both consistent and rigorous, drawing on i) the published literature, ii) expert assessment of that literature, and iii) a new analysis of Arctic glacier and ice cap trends combined with statistical modelling. We present annual and pentad (five-year mean) time series for the East, West Antarctic and Greenland Ice Sheets and glaciers separately and combined. When averaged over pentads, covering the entire period considered, we obtain a monotonic trend in mass contribution to the oceans, increasing from 0.31±0.35 mm of sea level equivalent for 1992-1996 to 1.85±0.13 for 2012-2016. Our integrated land ice trend is lower than many estimates of GRACE-derived ocean mass change for the same periods. This is due, in part, to a smaller estimate for glacier and ice cap mass trends compared to previous assessments. We discuss this, and other likely reasons, for the difference between GRACE ocean mass and land ice trends.
author2 Sub Dynamics Meteorology
Marine and Atmospheric Research
format Article in Journal/Newspaper
author Bamber, Jonathan L.
Westaway, Richard
Marzeion, Ben
Wouters, B.
spellingShingle Bamber, Jonathan L.
Westaway, Richard
Marzeion, Ben
Wouters, B.
The land ice contribution to sea level during the satellite era
author_facet Bamber, Jonathan L.
Westaway, Richard
Marzeion, Ben
Wouters, B.
author_sort Bamber, Jonathan L.
title The land ice contribution to sea level during the satellite era
title_short The land ice contribution to sea level during the satellite era
title_full The land ice contribution to sea level during the satellite era
title_fullStr The land ice contribution to sea level during the satellite era
title_full_unstemmed The land ice contribution to sea level during the satellite era
title_sort land ice contribution to sea level during the satellite era
publishDate 2018
url https://dspace.library.uu.nl/handle/1874/364766
geographic Antarctic
Arctic
Greenland
geographic_facet Antarctic
Arctic
Greenland
genre Antarc*
Antarctic
Arctic
glacier
Greenland
Ice cap
genre_facet Antarc*
Antarctic
Arctic
glacier
Greenland
Ice cap
op_relation 1748-9326
https://dspace.library.uu.nl/handle/1874/364766
op_rights info:eu-repo/semantics/OpenAccess
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