Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014

Estimating the long-term mass balance of the high-Arctic Svalbard archipelago is difficult due to the incomplete geodetic and direct glaciological measurements, both in space and time. To close these gaps, we use a coupled surface energy balance and snow pack model to analyse the mass changes of all...

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Main Authors: Østby, T.I., Schuler, T.V., Hagen, J.O., Hock, Regine, Kohler, J., Reijmer, C.H.
Other Authors: Sub Dynamics Meteorology, Marine and Atmospheric Research
Format: Article in Journal/Newspaper
Language:English
Published: 2017
Subjects:
Online Access:https://dspace.library.uu.nl/handle/1874/345083
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spelling ftunivutrecht:oai:dspace.library.uu.nl:1874/345083 2023-07-23T04:13:04+02:00 Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014 Østby, T.I. Schuler, T.V. Hagen, J.O. Hock, Regine Kohler, J. Reijmer, C.H. Sub Dynamics Meteorology Marine and Atmospheric Research 2017 image/pdf https://dspace.library.uu.nl/handle/1874/345083 en eng 1994-0416 https://dspace.library.uu.nl/handle/1874/345083 info:eu-repo/semantics/OpenAccess Article 2017 ftunivutrecht 2023-07-02T01:58:43Z Estimating the long-term mass balance of the high-Arctic Svalbard archipelago is difficult due to the incomplete geodetic and direct glaciological measurements, both in space and time. To close these gaps, we use a coupled surface energy balance and snow pack model to analyse the mass changes of all Svalbard glaciers for the period 1957–2014. The model is forced by ERA-40 and ERA-Interim reanalysis data, downscaled to 1 km resolution. The model is validated using snow/firn temperature and density measurements, mass balance from stakes and ice cores, meteorological measurements, snow depths from radar profiles and remotely sensed surface albedo and skin temperatures. Overall model performance is good, but it varies regionally. Over the entire period the model yields a climatic mass balance of 8.2 cm w. e. yr−1, which corresponds to a mass input of 175 Gt. Climatic mass balance has a linear trend of −1.4 ± 0.4 cm w. e. yr−2 with a shift from a positive to a negative regime around 1980. Modelled mass balance exhibits large interannual variability, which is controlled by summer temperatures and further amplified by the albedo feedback. For the recent period 2004–2013 climatic mass balance was −21 cm w. e. yr−1, and accounting for frontal ablation estimated by Błaszczyk et al.(2009) yields a total Svalbard mass balance of −39 cm w. e. yr−1 for this 10-year period. In terms of eustatic sea level, this corresponds to a rise of 0.037 mm yr−1. Refreezing of water in snow and firn is substantial at 22 cm w. e. yr−1 or 26 % of total annual accumulation. However, as warming leads to reduced firn area over the period, refreezing decreases both absolutely and relative to the total accumulation. Negative mass balance and elevated equilibrium line altitudes (ELAs) resulted in massive reduction of the thick (> 2 m) firn extent and an increase in the superimposed ice, thin (< 2 m) firn and bare ice extents. Atmospheric warming also leads to a marked change in the thermal regime, with cooling of the glacier mid-elevation and ... Article in Journal/Newspaper albedo Arctic glacier Svalbard Utrecht University Repository Arctic Svalbard Svalbard Archipelago
institution Open Polar
collection Utrecht University Repository
op_collection_id ftunivutrecht
language English
description Estimating the long-term mass balance of the high-Arctic Svalbard archipelago is difficult due to the incomplete geodetic and direct glaciological measurements, both in space and time. To close these gaps, we use a coupled surface energy balance and snow pack model to analyse the mass changes of all Svalbard glaciers for the period 1957–2014. The model is forced by ERA-40 and ERA-Interim reanalysis data, downscaled to 1 km resolution. The model is validated using snow/firn temperature and density measurements, mass balance from stakes and ice cores, meteorological measurements, snow depths from radar profiles and remotely sensed surface albedo and skin temperatures. Overall model performance is good, but it varies regionally. Over the entire period the model yields a climatic mass balance of 8.2 cm w. e. yr−1, which corresponds to a mass input of 175 Gt. Climatic mass balance has a linear trend of −1.4 ± 0.4 cm w. e. yr−2 with a shift from a positive to a negative regime around 1980. Modelled mass balance exhibits large interannual variability, which is controlled by summer temperatures and further amplified by the albedo feedback. For the recent period 2004–2013 climatic mass balance was −21 cm w. e. yr−1, and accounting for frontal ablation estimated by Błaszczyk et al.(2009) yields a total Svalbard mass balance of −39 cm w. e. yr−1 for this 10-year period. In terms of eustatic sea level, this corresponds to a rise of 0.037 mm yr−1. Refreezing of water in snow and firn is substantial at 22 cm w. e. yr−1 or 26 % of total annual accumulation. However, as warming leads to reduced firn area over the period, refreezing decreases both absolutely and relative to the total accumulation. Negative mass balance and elevated equilibrium line altitudes (ELAs) resulted in massive reduction of the thick (> 2 m) firn extent and an increase in the superimposed ice, thin (< 2 m) firn and bare ice extents. Atmospheric warming also leads to a marked change in the thermal regime, with cooling of the glacier mid-elevation and ...
author2 Sub Dynamics Meteorology
Marine and Atmospheric Research
format Article in Journal/Newspaper
author Østby, T.I.
Schuler, T.V.
Hagen, J.O.
Hock, Regine
Kohler, J.
Reijmer, C.H.
spellingShingle Østby, T.I.
Schuler, T.V.
Hagen, J.O.
Hock, Regine
Kohler, J.
Reijmer, C.H.
Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014
author_facet Østby, T.I.
Schuler, T.V.
Hagen, J.O.
Hock, Regine
Kohler, J.
Reijmer, C.H.
author_sort Østby, T.I.
title Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014
title_short Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014
title_full Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014
title_fullStr Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014
title_full_unstemmed Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014
title_sort diagnosing the decline in climatic mass balance of glaciers in svalbard over 1957–2014
publishDate 2017
url https://dspace.library.uu.nl/handle/1874/345083
geographic Arctic
Svalbard
Svalbard Archipelago
geographic_facet Arctic
Svalbard
Svalbard Archipelago
genre albedo
Arctic
glacier
Svalbard
genre_facet albedo
Arctic
glacier
Svalbard
op_relation 1994-0416
https://dspace.library.uu.nl/handle/1874/345083
op_rights info:eu-repo/semantics/OpenAccess
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