A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers
Ice cliffs might be partly responsible for the high mass losses of debris-covered glaciers in the Hindu Kush-Karakoram-Himalaya region. The few existing models of cliff backwasting are point-scale models applied at few locations or assume cliffs to be planes with constant slope and aspect, a major s...
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Cambridge University Press
2016
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Online Access: | https://doi.org/10.3189/2016AoG71A059 https://doaj.org/article/a08fcc9d3a724ecb926ac9392b9c947e |
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ftdoajarticles:oai:doaj.org/article:a08fcc9d3a724ecb926ac9392b9c947e 2023-05-15T13:29:29+02:00 A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers Pascal Buri Francesca Pellicciotti Jakob F. Steiner Evan S. Miles Walter W. Immerzeel 2016-03-01T00:00:00Z https://doi.org/10.3189/2016AoG71A059 https://doaj.org/article/a08fcc9d3a724ecb926ac9392b9c947e EN eng Cambridge University Press https://www.cambridge.org/core/product/identifier/S0260305500000215/type/journal_article https://doaj.org/toc/0260-3055 https://doaj.org/toc/1727-5644 doi:10.3189/2016AoG71A059 0260-3055 1727-5644 https://doaj.org/article/a08fcc9d3a724ecb926ac9392b9c947e Annals of Glaciology, Vol 57, Pp 199-211 (2016) debris-covered glaciers energy balance glacier mass balance mountain glaciers surface melt Meteorology. Climatology QC851-999 article 2016 ftdoajarticles https://doi.org/10.3189/2016AoG71A059 2023-03-12T01:31:57Z Ice cliffs might be partly responsible for the high mass losses of debris-covered glaciers in the Hindu Kush-Karakoram-Himalaya region. The few existing models of cliff backwasting are point-scale models applied at few locations or assume cliffs to be planes with constant slope and aspect, a major simplification given the complex surfaces of most cliffs. We develop the first grid-based model of cliff backwasting for two cliffs on debris-covered Lirung Glacier, Nepal. The model includes an improved representation of shortwave and longwave radiation, and their interplay with the glacier topography. Shortwave radiation varies considerably across the two cliffs, mostly due to direct radiation. Diffuse radiation is the major shortwave component, as the direct component is strongly reduced by the cliffs’ aspect and slope through self-shading. Incoming longwave radiation is higher than the total incoming shortwave flux, due to radiation emitted by the surrounding terrain, which is 25% of the incoming flux. Melt is highly variable in space, suggesting that simple models provide inaccurate estimates of total melt volumes. Although only representing 0.09% of the glacier tongue area, the total melt at the two cliffs over the measurement period is 2313 and 8282 m3, 1.23% of the total melt simulated by a glacio-hydrological model for the glacier’s tongue. Article in Journal/Newspaper Annals of Glaciology Directory of Open Access Journals: DOAJ Articles Annals of Glaciology 57 71 199 211 |
institution |
Open Polar |
collection |
Directory of Open Access Journals: DOAJ Articles |
op_collection_id |
ftdoajarticles |
language |
English |
topic |
debris-covered glaciers energy balance glacier mass balance mountain glaciers surface melt Meteorology. Climatology QC851-999 |
spellingShingle |
debris-covered glaciers energy balance glacier mass balance mountain glaciers surface melt Meteorology. Climatology QC851-999 Pascal Buri Francesca Pellicciotti Jakob F. Steiner Evan S. Miles Walter W. Immerzeel A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers |
topic_facet |
debris-covered glaciers energy balance glacier mass balance mountain glaciers surface melt Meteorology. Climatology QC851-999 |
description |
Ice cliffs might be partly responsible for the high mass losses of debris-covered glaciers in the Hindu Kush-Karakoram-Himalaya region. The few existing models of cliff backwasting are point-scale models applied at few locations or assume cliffs to be planes with constant slope and aspect, a major simplification given the complex surfaces of most cliffs. We develop the first grid-based model of cliff backwasting for two cliffs on debris-covered Lirung Glacier, Nepal. The model includes an improved representation of shortwave and longwave radiation, and their interplay with the glacier topography. Shortwave radiation varies considerably across the two cliffs, mostly due to direct radiation. Diffuse radiation is the major shortwave component, as the direct component is strongly reduced by the cliffs’ aspect and slope through self-shading. Incoming longwave radiation is higher than the total incoming shortwave flux, due to radiation emitted by the surrounding terrain, which is 25% of the incoming flux. Melt is highly variable in space, suggesting that simple models provide inaccurate estimates of total melt volumes. Although only representing 0.09% of the glacier tongue area, the total melt at the two cliffs over the measurement period is 2313 and 8282 m3, 1.23% of the total melt simulated by a glacio-hydrological model for the glacier’s tongue. |
format |
Article in Journal/Newspaper |
author |
Pascal Buri Francesca Pellicciotti Jakob F. Steiner Evan S. Miles Walter W. Immerzeel |
author_facet |
Pascal Buri Francesca Pellicciotti Jakob F. Steiner Evan S. Miles Walter W. Immerzeel |
author_sort |
Pascal Buri |
title |
A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers |
title_short |
A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers |
title_full |
A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers |
title_fullStr |
A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers |
title_full_unstemmed |
A grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers |
title_sort |
grid-based model of backwasting of supraglacial ice cliffs on debris-covered glaciers |
publisher |
Cambridge University Press |
publishDate |
2016 |
url |
https://doi.org/10.3189/2016AoG71A059 https://doaj.org/article/a08fcc9d3a724ecb926ac9392b9c947e |
genre |
Annals of Glaciology |
genre_facet |
Annals of Glaciology |
op_source |
Annals of Glaciology, Vol 57, Pp 199-211 (2016) |
op_relation |
https://www.cambridge.org/core/product/identifier/S0260305500000215/type/journal_article https://doaj.org/toc/0260-3055 https://doaj.org/toc/1727-5644 doi:10.3189/2016AoG71A059 0260-3055 1727-5644 https://doaj.org/article/a08fcc9d3a724ecb926ac9392b9c947e |
op_doi |
https://doi.org/10.3189/2016AoG71A059 |
container_title |
Annals of Glaciology |
container_volume |
57 |
container_issue |
71 |
container_start_page |
199 |
op_container_end_page |
211 |
_version_ |
1766000885057454080 |