Extent and elevation changes of Tröllaskagi glaciers, North Iceland

There are 170 glaciers on the Tröllaskagi peninsula in North Iceland. These range in size, from ~6 km2 for the larger valley glaciers, to <0.1 km2 for some of the smallest cirque glaciers. A number of glaciers have significant amounts of debris cover, in some cases almost the entire surface area,...

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Bibliographic Details
Main Author: Isla Emily Sweet 1999-
Other Authors: Háskóli Íslands
Format: Master Thesis
Language:English
Published: 2023
Subjects:
Ice
Online Access:http://hdl.handle.net/1946/44572
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record_format openpolar
spelling ftskemman:oai:skemman.is:1946/44572 2024-09-15T18:07:50+00:00 Extent and elevation changes of Tröllaskagi glaciers, North Iceland Isla Emily Sweet 1999- Háskóli Íslands 2023-05 application/pdf http://hdl.handle.net/1946/44572 en eng http://hdl.handle.net/1946/44572 Jarðvísindi Thesis Master's 2023 ftskemman 2024-08-14T04:39:51Z There are 170 glaciers on the Tröllaskagi peninsula in North Iceland. These range in size, from ~6 km2 for the larger valley glaciers, to <0.1 km2 for some of the smallest cirque glaciers. A number of glaciers have significant amounts of debris cover, in some cases almost the entire surface area, alongside a number of rock glaciers. There is also a large amount of buried ice, permafrost, and perennial snow and ice above 800-900 m a.s.l in most areas. This project aims to map the outlines of glaciers over the whole peninsula for 2022 and provide these for Icelandic and global outline inventories. Then, the main focus is on the central study area, to map outlines for 2016 and compare in detail the 6 years for changes in area, alongside differences in elevation to further highlight any changes, whether retreat, advance, or possible surging. Glacier outlines for 144 glaciers were mapped for the year 2022, and comparisons of outlines between 2016 and 2022 were done for 53 glaciers. Elevation difference was calculated by comparing digital elevation models of glaciers in 2016 and 2022 to allow for more knowledge on changes of these glaciers. A majority of these glaciers are retreating, at varying rates, with only 4 glaciers experiencing advance, such as Hofsdalsjökull, having the greatest area increase of 0.04 km2. The larger valley glaciers within the study have larger differences, with Héðinsdalsjökull experiencing -0.23 km2 loss in area, or 4.8% of its area. Smaller glaciers, however, have a larger percentage of area loss, such as Vesturdalsjökull 2 with -43.5% area loss. Elevation loss was greatest for larger glaciers, such as Tungnahryggsjökull eystri and vestri which have elevation losses exceeding 10 m in their snouts. Some of the smaller cirque glaciers also experience pronounced elevation loss, which for their size is significant as many are already very small, such as Vesturdalsjökull 2 with -6 m. Glaciers with very little elevation changes from 2016-2022, or even positive changes were Grýtudalsjökull ... Master Thesis glacier Ice Iceland permafrost Skemman (Iceland)
institution Open Polar
collection Skemman (Iceland)
op_collection_id ftskemman
language English
topic Jarðvísindi
spellingShingle Jarðvísindi
Isla Emily Sweet 1999-
Extent and elevation changes of Tröllaskagi glaciers, North Iceland
topic_facet Jarðvísindi
description There are 170 glaciers on the Tröllaskagi peninsula in North Iceland. These range in size, from ~6 km2 for the larger valley glaciers, to <0.1 km2 for some of the smallest cirque glaciers. A number of glaciers have significant amounts of debris cover, in some cases almost the entire surface area, alongside a number of rock glaciers. There is also a large amount of buried ice, permafrost, and perennial snow and ice above 800-900 m a.s.l in most areas. This project aims to map the outlines of glaciers over the whole peninsula for 2022 and provide these for Icelandic and global outline inventories. Then, the main focus is on the central study area, to map outlines for 2016 and compare in detail the 6 years for changes in area, alongside differences in elevation to further highlight any changes, whether retreat, advance, or possible surging. Glacier outlines for 144 glaciers were mapped for the year 2022, and comparisons of outlines between 2016 and 2022 were done for 53 glaciers. Elevation difference was calculated by comparing digital elevation models of glaciers in 2016 and 2022 to allow for more knowledge on changes of these glaciers. A majority of these glaciers are retreating, at varying rates, with only 4 glaciers experiencing advance, such as Hofsdalsjökull, having the greatest area increase of 0.04 km2. The larger valley glaciers within the study have larger differences, with Héðinsdalsjökull experiencing -0.23 km2 loss in area, or 4.8% of its area. Smaller glaciers, however, have a larger percentage of area loss, such as Vesturdalsjökull 2 with -43.5% area loss. Elevation loss was greatest for larger glaciers, such as Tungnahryggsjökull eystri and vestri which have elevation losses exceeding 10 m in their snouts. Some of the smaller cirque glaciers also experience pronounced elevation loss, which for their size is significant as many are already very small, such as Vesturdalsjökull 2 with -6 m. Glaciers with very little elevation changes from 2016-2022, or even positive changes were Grýtudalsjökull ...
author2 Háskóli Íslands
format Master Thesis
author Isla Emily Sweet 1999-
author_facet Isla Emily Sweet 1999-
author_sort Isla Emily Sweet 1999-
title Extent and elevation changes of Tröllaskagi glaciers, North Iceland
title_short Extent and elevation changes of Tröllaskagi glaciers, North Iceland
title_full Extent and elevation changes of Tröllaskagi glaciers, North Iceland
title_fullStr Extent and elevation changes of Tröllaskagi glaciers, North Iceland
title_full_unstemmed Extent and elevation changes of Tröllaskagi glaciers, North Iceland
title_sort extent and elevation changes of tröllaskagi glaciers, north iceland
publishDate 2023
url http://hdl.handle.net/1946/44572
genre glacier
Ice
Iceland
permafrost
genre_facet glacier
Ice
Iceland
permafrost
op_relation http://hdl.handle.net/1946/44572
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