An attempt to identify the extent of mountain glacier effects on air temperature - on the example of the Engabreen glacier (Norway)
This study aims to identify the extent of mountain glacier influence on air temperature in the vertical profile, using the Engabreen glacier (Norway) as an example. An important aspect of the work is also an analysis of the variation in surface temperature and wind conditions in the valley of the En...
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Adam Mickiewicz University Poznan
2023
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ftamickiewiczojs:oai:ojs.pressto.amu.edu.pl:article/38941 2023-09-05T13:19:38+02:00 An attempt to identify the extent of mountain glacier effects on air temperature - on the example of the Engabreen glacier (Norway) Próba identyfikacji zasięgu oddziaływania lodowca górskiego na temperaturę powietrza - na przykładzie lodowca Engabreen (Norwegia) Dyszy, Wiktoria Grajek, Zofia 2023-08-02 application/pdf http://pressto.amu.edu.pl/index.php/bfg/article/view/38941 pol pol Adam Mickiewicz University Poznan http://pressto.amu.edu.pl/index.php/bfg/article/view/38941/33107 http://pressto.amu.edu.pl/index.php/bfg/article/view/38941 Prawa autorskie (c) 2022 Wiktoria Dyszy, Zofia Grajek http://creativecommons.org/licenses/by-nc-nd/4.0 Badania Fizjograficzne Seria A - Geografia Fizyczna; Tom 13 Nr A 73 (2022); 63-77 2081-6014 air temperature vertical profile Engabreen glacier UAV variability of air temperature info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion Artykuł naukowy 2023 ftamickiewiczojs 2023-08-21T23:06:20Z This study aims to identify the extent of mountain glacier influence on air temperature in the vertical profile, using the Engabreen glacier (Norway) as an example. An important aspect of the work is also an analysis of the variation in surface temperature and wind conditions in the valley of the Engabreen glacier. The analysis was carried out based on measurement data of vertical air temperature taken over the glacier cavity with sensors mounted to an unmanned aerial vehicle. The field survey was carried out on 25 July 2022 in the afternoon. The results of the measurements may indicate that the presence of the glacier reduces the air temperature gradient with altitude compared to the surrounding areas. Above the glacier, the air temperature in the vertical profile increases with height. Based on the profiles taken above the glacier, it was concluded that the surface of the glacier influences the air temperature above it up to an altitude of 37–53 m above ground level. This study aims to identify the extent of mountain glacier influence on air temperature in the vertical profile, using the Engabreen glacier (Norway) as an example. An important aspect of the work is also an analysis of the variation in surface temperature and wind conditions in the valley of the Engabreen glacier. The analysis was carried out based on measurement data of vertical air temperature taken over the glacier cavity with sensors mounted to an unmanned aerial vehicle. The field survey was carried out on 25 July 2022 in the afternoon. The results of the measurements may indicate that the presence of the glacier reduces the air temperature gradient with altitude compared to the surrounding areas. Above the glacier, the air temperature in the vertical profile increases with height. Based on the profiles taken above the glacier, it was concluded that the surface of the glacier influences the air temperature above it up to an altitude of 37–53 m above ground level. Article in Journal/Newspaper glacier Adam Mickiewicz University in Poznań: PRESSto Engabreen ENVELOPE(13.771,13.771,66.682,66.682) Norway |
institution |
Open Polar |
collection |
Adam Mickiewicz University in Poznań: PRESSto |
op_collection_id |
ftamickiewiczojs |
language |
Polish |
topic |
air temperature vertical profile Engabreen glacier UAV variability of air temperature |
spellingShingle |
air temperature vertical profile Engabreen glacier UAV variability of air temperature Dyszy, Wiktoria Grajek, Zofia An attempt to identify the extent of mountain glacier effects on air temperature - on the example of the Engabreen glacier (Norway) |
topic_facet |
air temperature vertical profile Engabreen glacier UAV variability of air temperature |
description |
This study aims to identify the extent of mountain glacier influence on air temperature in the vertical profile, using the Engabreen glacier (Norway) as an example. An important aspect of the work is also an analysis of the variation in surface temperature and wind conditions in the valley of the Engabreen glacier. The analysis was carried out based on measurement data of vertical air temperature taken over the glacier cavity with sensors mounted to an unmanned aerial vehicle. The field survey was carried out on 25 July 2022 in the afternoon. The results of the measurements may indicate that the presence of the glacier reduces the air temperature gradient with altitude compared to the surrounding areas. Above the glacier, the air temperature in the vertical profile increases with height. Based on the profiles taken above the glacier, it was concluded that the surface of the glacier influences the air temperature above it up to an altitude of 37–53 m above ground level. This study aims to identify the extent of mountain glacier influence on air temperature in the vertical profile, using the Engabreen glacier (Norway) as an example. An important aspect of the work is also an analysis of the variation in surface temperature and wind conditions in the valley of the Engabreen glacier. The analysis was carried out based on measurement data of vertical air temperature taken over the glacier cavity with sensors mounted to an unmanned aerial vehicle. The field survey was carried out on 25 July 2022 in the afternoon. The results of the measurements may indicate that the presence of the glacier reduces the air temperature gradient with altitude compared to the surrounding areas. Above the glacier, the air temperature in the vertical profile increases with height. Based on the profiles taken above the glacier, it was concluded that the surface of the glacier influences the air temperature above it up to an altitude of 37–53 m above ground level. |
format |
Article in Journal/Newspaper |
author |
Dyszy, Wiktoria Grajek, Zofia |
author_facet |
Dyszy, Wiktoria Grajek, Zofia |
author_sort |
Dyszy, Wiktoria |
title |
An attempt to identify the extent of mountain glacier effects on air temperature - on the example of the Engabreen glacier (Norway) |
title_short |
An attempt to identify the extent of mountain glacier effects on air temperature - on the example of the Engabreen glacier (Norway) |
title_full |
An attempt to identify the extent of mountain glacier effects on air temperature - on the example of the Engabreen glacier (Norway) |
title_fullStr |
An attempt to identify the extent of mountain glacier effects on air temperature - on the example of the Engabreen glacier (Norway) |
title_full_unstemmed |
An attempt to identify the extent of mountain glacier effects on air temperature - on the example of the Engabreen glacier (Norway) |
title_sort |
attempt to identify the extent of mountain glacier effects on air temperature - on the example of the engabreen glacier (norway) |
publisher |
Adam Mickiewicz University Poznan |
publishDate |
2023 |
url |
http://pressto.amu.edu.pl/index.php/bfg/article/view/38941 |
long_lat |
ENVELOPE(13.771,13.771,66.682,66.682) |
geographic |
Engabreen Norway |
geographic_facet |
Engabreen Norway |
genre |
glacier |
genre_facet |
glacier |
op_source |
Badania Fizjograficzne Seria A - Geografia Fizyczna; Tom 13 Nr A 73 (2022); 63-77 2081-6014 |
op_relation |
http://pressto.amu.edu.pl/index.php/bfg/article/view/38941/33107 http://pressto.amu.edu.pl/index.php/bfg/article/view/38941 |
op_rights |
Prawa autorskie (c) 2022 Wiktoria Dyszy, Zofia Grajek http://creativecommons.org/licenses/by-nc-nd/4.0 |
_version_ |
1776200438011396096 |