Terrestrial processes affecting unlithified coastal erosion disparities in central fjords of Svalbard

Terrestrial influences of coastal cliff morphology and hydrological impact on coastal erosion in unlithified cliff sediments in the inner fjords of Svalbard are assessed. Differential global positioning system measurements have been taken annually over the past two to four years at four field sites...

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Published in:Polar Research
Main Authors: Evangeline G. Sessford, Maj Gøril Bæverford, Anne Hormes
Format: Article in Journal/Newspaper
Language:English
Published: Norwegian Polar Institute 2015
Subjects:
geo
Online Access:https://doi.org/10.3402/polar.v34.24122
https://doaj.org/article/bdb635b6f6774aa7bc6b022f225d52f2
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spelling fttriple:oai:gotriple.eu:oai:doaj.org/article:bdb635b6f6774aa7bc6b022f225d52f2 2023-05-15T18:02:39+02:00 Terrestrial processes affecting unlithified coastal erosion disparities in central fjords of Svalbard Evangeline G. Sessford Maj Gøril Bæverford Anne Hormes 2015-09-01 https://doi.org/10.3402/polar.v34.24122 https://doaj.org/article/bdb635b6f6774aa7bc6b022f225d52f2 en eng Norwegian Polar Institute 1751-8369 doi:10.3402/polar.v34.24122 https://doaj.org/article/bdb635b6f6774aa7bc6b022f225d52f2 undefined Polar Research, Vol 34, Iss 0, Pp 1-16 (2015) Terrestrial-sourced hazards coastal erosion coastal geomorphology Digital Shoreline Analysis System Svalbard geo envir Journal Article https://vocabularies.coar-repositories.org/resource_types/c_6501/ 2015 fttriple https://doi.org/10.3402/polar.v34.24122 2023-01-22T18:47:32Z Terrestrial influences of coastal cliff morphology and hydrological impact on coastal erosion in unlithified cliff sediments in the inner fjords of Svalbard are assessed. Differential global positioning system measurements have been taken annually over the past two to four years at four field sites in central Svalbard. Measurements were combined with aerial imagery using ArcGIS and the Digital Shoreline Analysis System to calculate rates of erosion in varying geomorphological cliff types. A total of 750 m of coast was divided into two main cliff types: ice-poor and ice-rich tundra cliffs and further divided based on their sediment depositional character and processes currently acting upon sediments. The results show that the most consistent erosion rates occur in the ice-poor cliffs (0.34 m/yr), whereas the most irregular and highest rates occur in ice-rich cliffs (0.47 m/yr). Throughout the study, no waves were observed to reach cliff toes, and therefore erosion rates are considered to reflect an effect of terrestrial processes, rather than wave action. Terrestrial hydrological processes are the driving factors for cliff erosion through winter precipitation for ice-poor cliffs and summer precipitation for ice-rich cliffs. Sediment removal from the base of the cliffs appears to be mainly conducted by sea ice and the ice foot during break up as waves did not reach the base of the studied cliffs during the observed period. Article in Journal/Newspaper Polar Research Sea ice Svalbard Tundra Unknown Svalbard Polar Research 34 1 24122
institution Open Polar
collection Unknown
op_collection_id fttriple
language English
topic Terrestrial-sourced hazards
coastal erosion
coastal geomorphology
Digital Shoreline Analysis System
Svalbard
geo
envir
spellingShingle Terrestrial-sourced hazards
coastal erosion
coastal geomorphology
Digital Shoreline Analysis System
Svalbard
geo
envir
Evangeline G. Sessford
Maj Gøril Bæverford
Anne Hormes
Terrestrial processes affecting unlithified coastal erosion disparities in central fjords of Svalbard
topic_facet Terrestrial-sourced hazards
coastal erosion
coastal geomorphology
Digital Shoreline Analysis System
Svalbard
geo
envir
description Terrestrial influences of coastal cliff morphology and hydrological impact on coastal erosion in unlithified cliff sediments in the inner fjords of Svalbard are assessed. Differential global positioning system measurements have been taken annually over the past two to four years at four field sites in central Svalbard. Measurements were combined with aerial imagery using ArcGIS and the Digital Shoreline Analysis System to calculate rates of erosion in varying geomorphological cliff types. A total of 750 m of coast was divided into two main cliff types: ice-poor and ice-rich tundra cliffs and further divided based on their sediment depositional character and processes currently acting upon sediments. The results show that the most consistent erosion rates occur in the ice-poor cliffs (0.34 m/yr), whereas the most irregular and highest rates occur in ice-rich cliffs (0.47 m/yr). Throughout the study, no waves were observed to reach cliff toes, and therefore erosion rates are considered to reflect an effect of terrestrial processes, rather than wave action. Terrestrial hydrological processes are the driving factors for cliff erosion through winter precipitation for ice-poor cliffs and summer precipitation for ice-rich cliffs. Sediment removal from the base of the cliffs appears to be mainly conducted by sea ice and the ice foot during break up as waves did not reach the base of the studied cliffs during the observed period.
format Article in Journal/Newspaper
author Evangeline G. Sessford
Maj Gøril Bæverford
Anne Hormes
author_facet Evangeline G. Sessford
Maj Gøril Bæverford
Anne Hormes
author_sort Evangeline G. Sessford
title Terrestrial processes affecting unlithified coastal erosion disparities in central fjords of Svalbard
title_short Terrestrial processes affecting unlithified coastal erosion disparities in central fjords of Svalbard
title_full Terrestrial processes affecting unlithified coastal erosion disparities in central fjords of Svalbard
title_fullStr Terrestrial processes affecting unlithified coastal erosion disparities in central fjords of Svalbard
title_full_unstemmed Terrestrial processes affecting unlithified coastal erosion disparities in central fjords of Svalbard
title_sort terrestrial processes affecting unlithified coastal erosion disparities in central fjords of svalbard
publisher Norwegian Polar Institute
publishDate 2015
url https://doi.org/10.3402/polar.v34.24122
https://doaj.org/article/bdb635b6f6774aa7bc6b022f225d52f2
geographic Svalbard
geographic_facet Svalbard
genre Polar Research
Sea ice
Svalbard
Tundra
genre_facet Polar Research
Sea ice
Svalbard
Tundra
op_source Polar Research, Vol 34, Iss 0, Pp 1-16 (2015)
op_relation 1751-8369
doi:10.3402/polar.v34.24122
https://doaj.org/article/bdb635b6f6774aa7bc6b022f225d52f2
op_rights undefined
op_doi https://doi.org/10.3402/polar.v34.24122
container_title Polar Research
container_volume 34
container_issue 1
container_start_page 24122
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