Calving fluxes and basal melt rates of Antarctic ice shelves
Iceberg calving has been assumed to be the dominant cause of mass loss for the Antarctic ice sheet, with previous estimates of the calving flux exceeding 2,000 gigatonnes per year1, 2. More recently, the importance of melting by the ocean has been demonstrated close to the grounding line and near th...
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ftunivutrecht:oai:dspace.library.uu.nl:1874/290610 2023-12-10T09:40:03+01:00 Calving fluxes and basal melt rates of Antarctic ice shelves Depoorter, M.A. Bamber, J.L. Griggs, J.A. Lenaerts, J.T.M. Ligtenberg, S.R.M. van den Broeke, M.R. Moholdt, G. Marine and Atmospheric Research Sub Dynamics Meteorology 2013 text/plain https://dspace.library.uu.nl/handle/1874/290610 eng eng https://dspace.library.uu.nl/handle/1874/290610 info:eu-repo/semantics/OpenAccess 2013 ftunivutrecht 2023-11-15T23:11:55Z Iceberg calving has been assumed to be the dominant cause of mass loss for the Antarctic ice sheet, with previous estimates of the calving flux exceeding 2,000 gigatonnes per year1, 2. More recently, the importance of melting by the ocean has been demonstrated close to the grounding line and near the calving front3, 4, 5. So far, however, no study has reliably quantified the calving flux and the basal mass balance (the balance between accretion and ablation at the ice-shelf base) for the whole of Antarctica. The distribution of fresh water in the Southern Ocean and its partitioning between the liquid and solid phases is therefore poorly constrained. Here we estimate the mass balance components for all ice shelves in Antarctica, using satellite measurements of calving flux and grounding-line flux, modelled ice-shelf snow accumulation rates6 and a regional scaling that accounts for unsurveyed areas. We obtain a total calving flux of 1,321 ± 144 gigatonnes per year and a total basal mass balance of −1,454 ± 174 gigatonnes per year. This means that about half of the ice-sheet surface mass gain is lost through oceanic erosion before reaching the ice front, and the calving flux is about 34 per cent less than previous estimates derived from iceberg tracking1, 2, 7. In addition, the fraction of mass loss due to basal processes varies from about 10 to 90 per cent between ice shelves. We find a significant positive correlation between basal mass loss and surface elevation change for ice shelves experiencing surface lowering8 and enhanced discharge9. We suggest that basal mass loss is a valuable metric for predicting future ice-shelf vulnerability to oceanic forcing. Other/Unknown Material Antarc* Antarctic Antarctica Ice Sheet Ice Shelf Ice Shelves Iceberg* Southern Ocean Utrecht University Repository Antarctic Southern Ocean The Antarctic |
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Open Polar |
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Utrecht University Repository |
op_collection_id |
ftunivutrecht |
language |
English |
description |
Iceberg calving has been assumed to be the dominant cause of mass loss for the Antarctic ice sheet, with previous estimates of the calving flux exceeding 2,000 gigatonnes per year1, 2. More recently, the importance of melting by the ocean has been demonstrated close to the grounding line and near the calving front3, 4, 5. So far, however, no study has reliably quantified the calving flux and the basal mass balance (the balance between accretion and ablation at the ice-shelf base) for the whole of Antarctica. The distribution of fresh water in the Southern Ocean and its partitioning between the liquid and solid phases is therefore poorly constrained. Here we estimate the mass balance components for all ice shelves in Antarctica, using satellite measurements of calving flux and grounding-line flux, modelled ice-shelf snow accumulation rates6 and a regional scaling that accounts for unsurveyed areas. We obtain a total calving flux of 1,321 ± 144 gigatonnes per year and a total basal mass balance of −1,454 ± 174 gigatonnes per year. This means that about half of the ice-sheet surface mass gain is lost through oceanic erosion before reaching the ice front, and the calving flux is about 34 per cent less than previous estimates derived from iceberg tracking1, 2, 7. In addition, the fraction of mass loss due to basal processes varies from about 10 to 90 per cent between ice shelves. We find a significant positive correlation between basal mass loss and surface elevation change for ice shelves experiencing surface lowering8 and enhanced discharge9. We suggest that basal mass loss is a valuable metric for predicting future ice-shelf vulnerability to oceanic forcing. |
author2 |
Marine and Atmospheric Research Sub Dynamics Meteorology |
author |
Depoorter, M.A. Bamber, J.L. Griggs, J.A. Lenaerts, J.T.M. Ligtenberg, S.R.M. van den Broeke, M.R. Moholdt, G. |
spellingShingle |
Depoorter, M.A. Bamber, J.L. Griggs, J.A. Lenaerts, J.T.M. Ligtenberg, S.R.M. van den Broeke, M.R. Moholdt, G. Calving fluxes and basal melt rates of Antarctic ice shelves |
author_facet |
Depoorter, M.A. Bamber, J.L. Griggs, J.A. Lenaerts, J.T.M. Ligtenberg, S.R.M. van den Broeke, M.R. Moholdt, G. |
author_sort |
Depoorter, M.A. |
title |
Calving fluxes and basal melt rates of Antarctic ice shelves |
title_short |
Calving fluxes and basal melt rates of Antarctic ice shelves |
title_full |
Calving fluxes and basal melt rates of Antarctic ice shelves |
title_fullStr |
Calving fluxes and basal melt rates of Antarctic ice shelves |
title_full_unstemmed |
Calving fluxes and basal melt rates of Antarctic ice shelves |
title_sort |
calving fluxes and basal melt rates of antarctic ice shelves |
publishDate |
2013 |
url |
https://dspace.library.uu.nl/handle/1874/290610 |
geographic |
Antarctic Southern Ocean The Antarctic |
geographic_facet |
Antarctic Southern Ocean The Antarctic |
genre |
Antarc* Antarctic Antarctica Ice Sheet Ice Shelf Ice Shelves Iceberg* Southern Ocean |
genre_facet |
Antarc* Antarctic Antarctica Ice Sheet Ice Shelf Ice Shelves Iceberg* Southern Ocean |
op_relation |
https://dspace.library.uu.nl/handle/1874/290610 |
op_rights |
info:eu-repo/semantics/OpenAccess |
_version_ |
1784891240897052672 |