Fluctuations of mountain glaciers in northern Norway throughout the Holocene

Mountain glaciers are an intrinsic part of the cryosphere and their short response times make them crucial indicators of climate change. Comprehensive investigations into long- and short-term glacier fluctuations are essential in developing reliable reconstructions of past climate variability and pl...

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Main Author: LEIGH, JOSHUA,ROBERT
Format: Thesis
Language:unknown
Published: 2022
Subjects:
Online Access:http://etheses.dur.ac.uk/14346/
http://etheses.dur.ac.uk/14346/1/JRLeigh_FullThesis_Amended_02.03.2022.pdf
http://etheses.dur.ac.uk/14346/2/Leighetal2021_CompressedMapFinal.pdf
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spelling ftunidurhamethes:oai:etheses.dur.ac.uk:14346 2023-05-15T15:02:19+02:00 Fluctuations of mountain glaciers in northern Norway throughout the Holocene LEIGH, JOSHUA,ROBERT 2022 application/pdf http://etheses.dur.ac.uk/14346/ http://etheses.dur.ac.uk/14346/1/JRLeigh_FullThesis_Amended_02.03.2022.pdf http://etheses.dur.ac.uk/14346/2/Leighetal2021_CompressedMapFinal.pdf unknown oai:etheses.dur.ac.uk:14346 http://etheses.dur.ac.uk/14346/1/JRLeigh_FullThesis_Amended_02.03.2022.pdf http://etheses.dur.ac.uk/14346/2/Leighetal2021_CompressedMapFinal.pdf http://etheses.dur.ac.uk/14346/ Glaciology Glaciers Norway Holocene Little Ice Age Climate change Lichenometry Remote Sensing Schmidt hammer Geomorphology Arctic Geochronology Thesis NonPeerReviewed 2022 ftunidurhamethes 2022-09-23T14:17:44Z Mountain glaciers are an intrinsic part of the cryosphere and their short response times make them crucial indicators of climate change. Comprehensive investigations into long- and short-term glacier fluctuations are essential in developing reliable reconstructions of past climate variability and play a fundamental role in underpinning numerical models for the predictions of glacier behaviour in a changing climate. This thesis presents changes of mountain glaciers in central Troms and Finnmark County northern (Arctic) Norway, since the recession of the Scandinavian Ice Sheet (SIS; 14,000-11,000 cal. yrs BP), throughout the Holocene, and during the 20th and early-21st century. A new method for identifying and mapping very small glaciers from remotely sensed imagery is developed; implementing this new approach has enabled the identification of an additional 78 ice bodies not included within prior glacier inventories. Subsequent remote sensing over the period 1989-2018 reveals considerable glacier recession, when glaciers (n = 219) shrank by 35 km2 (-35%). A subset of 15 glaciers reveals them to have lost ~69% of their area between LIA maxima and 2018 (from 10 km2 to 3.1 km2 respectively). The corollary of this is that, given 90% of the studied glaciers were <0.5 km2 in 2018, it is likely that many will melt completely before the end of the 21st century. By combining extensive glacial and periglacial geomorphological mapping with calibrated and relative age dating, the first moraine chronology within the Rotsund Valley (Kåfjord Alps) has been established. This Holocene chronology is one of the most extensive records of small mountain glaciers across mainland Troms and Finnmark county, filling a critical gap in our knowledge on the patterns of Holocene glacier fluctuations in an area particularly susceptible to rapid climatic changes. Mountain glaciers in this region likely reached their maximum extent between ~12,000 and ~10,500 cal. yrs BP, roughly corresponding with the end of the Younger Dryas (YD; ... Thesis Arctic Climate change Finnmark glacier Ice Sheet Kåfjord Northern Norway Finnmark Troms Durham University: Durham e-Theses Arctic Norway Prior Glacier ENVELOPE(160.167,160.167,-70.083,-70.083) Rotsund ENVELOPE(20.590,20.590,69.778,69.778)
institution Open Polar
collection Durham University: Durham e-Theses
op_collection_id ftunidurhamethes
language unknown
topic Glaciology
Glaciers
Norway
Holocene
Little Ice Age
Climate change
Lichenometry
Remote Sensing
Schmidt hammer
Geomorphology
Arctic
Geochronology
spellingShingle Glaciology
Glaciers
Norway
Holocene
Little Ice Age
Climate change
Lichenometry
Remote Sensing
Schmidt hammer
Geomorphology
Arctic
Geochronology
LEIGH, JOSHUA,ROBERT
Fluctuations of mountain glaciers in northern Norway throughout the Holocene
topic_facet Glaciology
Glaciers
Norway
Holocene
Little Ice Age
Climate change
Lichenometry
Remote Sensing
Schmidt hammer
Geomorphology
Arctic
Geochronology
description Mountain glaciers are an intrinsic part of the cryosphere and their short response times make them crucial indicators of climate change. Comprehensive investigations into long- and short-term glacier fluctuations are essential in developing reliable reconstructions of past climate variability and play a fundamental role in underpinning numerical models for the predictions of glacier behaviour in a changing climate. This thesis presents changes of mountain glaciers in central Troms and Finnmark County northern (Arctic) Norway, since the recession of the Scandinavian Ice Sheet (SIS; 14,000-11,000 cal. yrs BP), throughout the Holocene, and during the 20th and early-21st century. A new method for identifying and mapping very small glaciers from remotely sensed imagery is developed; implementing this new approach has enabled the identification of an additional 78 ice bodies not included within prior glacier inventories. Subsequent remote sensing over the period 1989-2018 reveals considerable glacier recession, when glaciers (n = 219) shrank by 35 km2 (-35%). A subset of 15 glaciers reveals them to have lost ~69% of their area between LIA maxima and 2018 (from 10 km2 to 3.1 km2 respectively). The corollary of this is that, given 90% of the studied glaciers were <0.5 km2 in 2018, it is likely that many will melt completely before the end of the 21st century. By combining extensive glacial and periglacial geomorphological mapping with calibrated and relative age dating, the first moraine chronology within the Rotsund Valley (Kåfjord Alps) has been established. This Holocene chronology is one of the most extensive records of small mountain glaciers across mainland Troms and Finnmark county, filling a critical gap in our knowledge on the patterns of Holocene glacier fluctuations in an area particularly susceptible to rapid climatic changes. Mountain glaciers in this region likely reached their maximum extent between ~12,000 and ~10,500 cal. yrs BP, roughly corresponding with the end of the Younger Dryas (YD; ...
format Thesis
author LEIGH, JOSHUA,ROBERT
author_facet LEIGH, JOSHUA,ROBERT
author_sort LEIGH, JOSHUA,ROBERT
title Fluctuations of mountain glaciers in northern Norway throughout the Holocene
title_short Fluctuations of mountain glaciers in northern Norway throughout the Holocene
title_full Fluctuations of mountain glaciers in northern Norway throughout the Holocene
title_fullStr Fluctuations of mountain glaciers in northern Norway throughout the Holocene
title_full_unstemmed Fluctuations of mountain glaciers in northern Norway throughout the Holocene
title_sort fluctuations of mountain glaciers in northern norway throughout the holocene
publishDate 2022
url http://etheses.dur.ac.uk/14346/
http://etheses.dur.ac.uk/14346/1/JRLeigh_FullThesis_Amended_02.03.2022.pdf
http://etheses.dur.ac.uk/14346/2/Leighetal2021_CompressedMapFinal.pdf
long_lat ENVELOPE(160.167,160.167,-70.083,-70.083)
ENVELOPE(20.590,20.590,69.778,69.778)
geographic Arctic
Norway
Prior Glacier
Rotsund
geographic_facet Arctic
Norway
Prior Glacier
Rotsund
genre Arctic
Climate change
Finnmark
glacier
Ice Sheet
Kåfjord
Northern Norway
Finnmark
Troms
genre_facet Arctic
Climate change
Finnmark
glacier
Ice Sheet
Kåfjord
Northern Norway
Finnmark
Troms
op_relation oai:etheses.dur.ac.uk:14346
http://etheses.dur.ac.uk/14346/1/JRLeigh_FullThesis_Amended_02.03.2022.pdf
http://etheses.dur.ac.uk/14346/2/Leighetal2021_CompressedMapFinal.pdf
http://etheses.dur.ac.uk/14346/
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