Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling
West Antarctic climate and surface mass balance (SMB) records are sparse. To fill this gap, regional atmospheric climate modelling is useful, providing that such models are employed at sufficiently high horizontal resolution and coupled with a snow model. Here we present the results of a high-resolu...
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Cambridge University Press
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ftleedsuniv:oai:eprints.whiterose.ac.uk:124770 2023-05-15T13:29:41+02:00 Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling Lenaerts, JTM Ligtenberg, SRM Medley, B Van de Berg, WJ Konrad, H Nicolas, JP Van Wessem, JM Trusel, LD Mulvaney, R Tuckwell, RJ Hogg, AE Thomas, ER 2018-07 text https://eprints.whiterose.ac.uk/124770/ https://eprints.whiterose.ac.uk/124770/1/lenaerts%20et%20al%202017.pdf en eng Cambridge University Press https://eprints.whiterose.ac.uk/124770/1/lenaerts%20et%20al%202017.pdf Lenaerts, JTM, Ligtenberg, SRM, Medley, B et al. (9 more authors) (2018) Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling. Annals of Glaciology, 59 (76pt1). pp. 29-41. ISSN 0260-3055 cc_by_4 CC-BY Article NonPeerReviewed 2018 ftleedsuniv 2023-01-30T22:01:37Z West Antarctic climate and surface mass balance (SMB) records are sparse. To fill this gap, regional atmospheric climate modelling is useful, providing that such models are employed at sufficiently high horizontal resolution and coupled with a snow model. Here we present the results of a high-resolution (5.5 km) regional atmospheric climate model (RACMO2) simulation of coastal West Antarctica for the period 1979–2015. We evaluate the results with available in situ weather observations, remote-sensing estimates of surface melt, and SMB estimates derived from radar and firn cores. Moreover, results are compared with those from a lower-resolution version, to assess the added value of the resolution. The high-resolution model resolves small-scale climate variability invoked by topography, such as the relatively warm conditions over ice-shelf grounding zones, and local wind speed accelerations. Surface melt and SMB are well reproduced by RACMO2. This dataset will prove useful for picking ice core locations, converting elevation changes to mass changes, for driving ocean, ice-sheet and coupled models, and for attributing changes in the West Antarctic Ice Sheet and shelves to changes in atmospheric forcing. Article in Journal/Newspaper Annals of Glaciology Antarc* Antarctic Antarctica ice core Ice Sheet Ice Shelf West Antarctica White Rose Research Online (Universities of Leeds, Sheffield & York) Antarctic West Antarctica West Antarctic Ice Sheet |
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Open Polar |
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White Rose Research Online (Universities of Leeds, Sheffield & York) |
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ftleedsuniv |
language |
English |
description |
West Antarctic climate and surface mass balance (SMB) records are sparse. To fill this gap, regional atmospheric climate modelling is useful, providing that such models are employed at sufficiently high horizontal resolution and coupled with a snow model. Here we present the results of a high-resolution (5.5 km) regional atmospheric climate model (RACMO2) simulation of coastal West Antarctica for the period 1979–2015. We evaluate the results with available in situ weather observations, remote-sensing estimates of surface melt, and SMB estimates derived from radar and firn cores. Moreover, results are compared with those from a lower-resolution version, to assess the added value of the resolution. The high-resolution model resolves small-scale climate variability invoked by topography, such as the relatively warm conditions over ice-shelf grounding zones, and local wind speed accelerations. Surface melt and SMB are well reproduced by RACMO2. This dataset will prove useful for picking ice core locations, converting elevation changes to mass changes, for driving ocean, ice-sheet and coupled models, and for attributing changes in the West Antarctic Ice Sheet and shelves to changes in atmospheric forcing. |
format |
Article in Journal/Newspaper |
author |
Lenaerts, JTM Ligtenberg, SRM Medley, B Van de Berg, WJ Konrad, H Nicolas, JP Van Wessem, JM Trusel, LD Mulvaney, R Tuckwell, RJ Hogg, AE Thomas, ER |
spellingShingle |
Lenaerts, JTM Ligtenberg, SRM Medley, B Van de Berg, WJ Konrad, H Nicolas, JP Van Wessem, JM Trusel, LD Mulvaney, R Tuckwell, RJ Hogg, AE Thomas, ER Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling |
author_facet |
Lenaerts, JTM Ligtenberg, SRM Medley, B Van de Berg, WJ Konrad, H Nicolas, JP Van Wessem, JM Trusel, LD Mulvaney, R Tuckwell, RJ Hogg, AE Thomas, ER |
author_sort |
Lenaerts, JTM |
title |
Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling |
title_short |
Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling |
title_full |
Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling |
title_fullStr |
Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling |
title_full_unstemmed |
Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling |
title_sort |
climate and surface mass balance of coastal west antarctica resolved by regional climate modelling |
publisher |
Cambridge University Press |
publishDate |
2018 |
url |
https://eprints.whiterose.ac.uk/124770/ https://eprints.whiterose.ac.uk/124770/1/lenaerts%20et%20al%202017.pdf |
geographic |
Antarctic West Antarctica West Antarctic Ice Sheet |
geographic_facet |
Antarctic West Antarctica West Antarctic Ice Sheet |
genre |
Annals of Glaciology Antarc* Antarctic Antarctica ice core Ice Sheet Ice Shelf West Antarctica |
genre_facet |
Annals of Glaciology Antarc* Antarctic Antarctica ice core Ice Sheet Ice Shelf West Antarctica |
op_relation |
https://eprints.whiterose.ac.uk/124770/1/lenaerts%20et%20al%202017.pdf Lenaerts, JTM, Ligtenberg, SRM, Medley, B et al. (9 more authors) (2018) Climate and surface mass balance of coastal West Antarctica resolved by regional climate modelling. Annals of Glaciology, 59 (76pt1). pp. 29-41. ISSN 0260-3055 |
op_rights |
cc_by_4 |
op_rightsnorm |
CC-BY |
_version_ |
1766001998049574912 |