Fluctuations of a Greenlandic tidewater glacier from the Little Ice Age to present: reconstruction and modelling of Kangiata Nunaata Sermia, SW Greenland

Significant uncertainty surrounds the influence of atmospheric and oceanic forcing on the fluctuations of tidewater glacier outlets of the Greenland ice sheet (GrIS), with the majority of studies focussing on dynamics over the last two decades. Although numerical model based projections exist antici...

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Main Author: Lea, JM
Format: Thesis
Language:unknown
Published: University of Liverpool Repository 2016
Subjects:
Online Access:https://dx.doi.org/10.17638/03000102
https://livrepository.liverpool.ac.uk/id/eprint/3000102
id ftdatacite:10.17638/03000102
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spelling ftdatacite:10.17638/03000102 2023-05-15T16:20:59+02:00 Fluctuations of a Greenlandic tidewater glacier from the Little Ice Age to present: reconstruction and modelling of Kangiata Nunaata Sermia, SW Greenland Lea, JM 2016 https://dx.doi.org/10.17638/03000102 https://livrepository.liverpool.ac.uk/id/eprint/3000102 unknown University of Liverpool Repository Text Thesis article-journal ScholarlyArticle 2016 ftdatacite https://doi.org/10.17638/03000102 2021-11-05T12:55:41Z Significant uncertainty surrounds the influence of atmospheric and oceanic forcing on the fluctuations of tidewater glacier outlets of the Greenland ice sheet (GrIS), with the majority of studies focussing on dynamics over the last two decades. Although numerical model based projections exist anticipating the future dynamics of major GrIS outlets, these have been made using temporally limited model calibration periods (<5 years) compared to the centennial timescales that they seek to predict over. The ability of these numerical models to simulate the centennial timescale dynamics of GrIS tidewater glaciers has therefore not been explicitly tested. This thesis seeks to calibrate a well-established one-dimensional tidewater glacier numerical model against post-Little Ice Age maximum (LIAmax) observations of a major tidewater glacier outlet of GrIS. The study site chosen is Kangiata Nunaata Sermia (KNS); the largest tidewater outlet in SW Greenland south of Jakobshavn Isbræ. This glacier is known to have undergone retreat of >20 km since its LIAmax, though the timing of this retreat and response to climate forcing is currently poorly constrained. Utilising a range of source material, it is demonstrated that KNS is likely to have achieved its LIAmax by 1761, experiencing either one, or two multi-kilometre retreats by 1859, and retreats of a similar scale between 1921-1968, and 1997-2012. Terminus fluctuations of KNS were in phase with climate anomalies, where data were available for comparison (1871-2012). To allow accurate comparison to numerical model output, the accuracy of different methods of quantifying glacier terminus change was also evaluated. Two new methods were devised so observations could be matched with greater accuracy than existing methods allowed. Glacier sensitivity to climate forcing was evaluated using the numerical model. Thesis glacier Greenland greenlandic Ice Sheet Jakobshavn Jakobshavn isbræ Tidewater DataCite Metadata Store (German National Library of Science and Technology) Greenland Jakobshavn Isbræ ENVELOPE(-49.917,-49.917,69.167,69.167)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language unknown
description Significant uncertainty surrounds the influence of atmospheric and oceanic forcing on the fluctuations of tidewater glacier outlets of the Greenland ice sheet (GrIS), with the majority of studies focussing on dynamics over the last two decades. Although numerical model based projections exist anticipating the future dynamics of major GrIS outlets, these have been made using temporally limited model calibration periods (<5 years) compared to the centennial timescales that they seek to predict over. The ability of these numerical models to simulate the centennial timescale dynamics of GrIS tidewater glaciers has therefore not been explicitly tested. This thesis seeks to calibrate a well-established one-dimensional tidewater glacier numerical model against post-Little Ice Age maximum (LIAmax) observations of a major tidewater glacier outlet of GrIS. The study site chosen is Kangiata Nunaata Sermia (KNS); the largest tidewater outlet in SW Greenland south of Jakobshavn Isbræ. This glacier is known to have undergone retreat of >20 km since its LIAmax, though the timing of this retreat and response to climate forcing is currently poorly constrained. Utilising a range of source material, it is demonstrated that KNS is likely to have achieved its LIAmax by 1761, experiencing either one, or two multi-kilometre retreats by 1859, and retreats of a similar scale between 1921-1968, and 1997-2012. Terminus fluctuations of KNS were in phase with climate anomalies, where data were available for comparison (1871-2012). To allow accurate comparison to numerical model output, the accuracy of different methods of quantifying glacier terminus change was also evaluated. Two new methods were devised so observations could be matched with greater accuracy than existing methods allowed. Glacier sensitivity to climate forcing was evaluated using the numerical model.
format Thesis
author Lea, JM
spellingShingle Lea, JM
Fluctuations of a Greenlandic tidewater glacier from the Little Ice Age to present: reconstruction and modelling of Kangiata Nunaata Sermia, SW Greenland
author_facet Lea, JM
author_sort Lea, JM
title Fluctuations of a Greenlandic tidewater glacier from the Little Ice Age to present: reconstruction and modelling of Kangiata Nunaata Sermia, SW Greenland
title_short Fluctuations of a Greenlandic tidewater glacier from the Little Ice Age to present: reconstruction and modelling of Kangiata Nunaata Sermia, SW Greenland
title_full Fluctuations of a Greenlandic tidewater glacier from the Little Ice Age to present: reconstruction and modelling of Kangiata Nunaata Sermia, SW Greenland
title_fullStr Fluctuations of a Greenlandic tidewater glacier from the Little Ice Age to present: reconstruction and modelling of Kangiata Nunaata Sermia, SW Greenland
title_full_unstemmed Fluctuations of a Greenlandic tidewater glacier from the Little Ice Age to present: reconstruction and modelling of Kangiata Nunaata Sermia, SW Greenland
title_sort fluctuations of a greenlandic tidewater glacier from the little ice age to present: reconstruction and modelling of kangiata nunaata sermia, sw greenland
publisher University of Liverpool Repository
publishDate 2016
url https://dx.doi.org/10.17638/03000102
https://livrepository.liverpool.ac.uk/id/eprint/3000102
long_lat ENVELOPE(-49.917,-49.917,69.167,69.167)
geographic Greenland
Jakobshavn Isbræ
geographic_facet Greenland
Jakobshavn Isbræ
genre glacier
Greenland
greenlandic
Ice Sheet
Jakobshavn
Jakobshavn isbræ
Tidewater
genre_facet glacier
Greenland
greenlandic
Ice Sheet
Jakobshavn
Jakobshavn isbræ
Tidewater
op_doi https://doi.org/10.17638/03000102
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