Sedimentary processes and paleoenvironments in Moskusoksefjord and Nordfjord, North-East Greenland.

Multi-proxy analyses of five sediment cores (including lithostratigraphy, physical properties and XRF-scanning) and analyses of swath bathymetry and high resolution seismic data were integrated in order to reconstruct the Holocene glacial history and paleoenvironment of Moskusoksefjord and inner par...

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Main Author: Olsen, Ingrid Leirvik
Format: Master Thesis
Language:English
Published: UiT Norges arktiske universitet 2015
Subjects:
Online Access:https://hdl.handle.net/10037/7740
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author Olsen, Ingrid Leirvik
author_facet Olsen, Ingrid Leirvik
author_sort Olsen, Ingrid Leirvik
collection University of Tromsø: Munin Open Research Archive
description Multi-proxy analyses of five sediment cores (including lithostratigraphy, physical properties and XRF-scanning) and analyses of swath bathymetry and high resolution seismic data were integrated in order to reconstruct the Holocene glacial history and paleoenvironment of Moskusoksefjord and inner parts of Nordfjord, North-East Greenland. In Moskusoksefjord, the large-scale bathymetry is divided into an inner-, middle- and outer basins, separated by relatively large deltas prograding into the fjord from both sides. Several slide scars and sediment lobes are also found, in addition to numerous channels. No glacial landforms have been observed in the study area apart from two transverse ridges in the outer basin of Moskusoksefjord which may represent buried glacial moraines. The seismostratigraphy revealed two main units with a stratified acoustic signature as well as MTDs of various dimensions. From their distribution, mass-transport activity in Moskusoksefjord and Nordfjord probably occurred episodically throughout the entire Holocene. Suspension settling, as well as mass-transport deposits and ice-rafting from icebergs and sea-ice are the main sedimentary processes of both fjords. The two main sources of sediment were theWaltershausen Gletscher and the river coming from Badlandal at the fjord head of Moskusoksefjord. The estimated average sedimentation rates are 58 cm/ka for the last ~8 ka and 85-446 cm/ka for the last 1 ka. Ice-rafting was of higher relative importance with increasing influence away from the glacier margin. However, rafting of material from icebergs and sea ice has proven to be of less importance in the two studied fjords than in other East-Greenland fjords (cf. Smith and Andrews, 2000). After retreating onto land during the warm Holocene Climate Optimum, Waltershausen Gletscher probably advanced into tidewater after a climate cooling ~6500 cal. yr. BP. An increase in the glacial activity continued through the Neoglaciation, with shorefast sea-ice suppressing iceberg rafting and an increase in ...
format Master Thesis
genre East Greenland
glacier
Greenland
Moskusoksefjord
Sea ice
Tidewater
genre_facet East Greenland
glacier
Greenland
Moskusoksefjord
Sea ice
Tidewater
geographic Greenland
Moskusoksefjord
Waltershausen Gletscher
geographic_facet Greenland
Moskusoksefjord
Waltershausen Gletscher
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institution Open Polar
language English
long_lat ENVELOPE(-23.214,-23.214,73.644,73.644)
ENVELOPE(-24.417,-24.417,73.900,73.900)
op_collection_id ftunivtroemsoe
op_relation https://hdl.handle.net/10037/7740
op_rights Attribution-NonCommercial-ShareAlike 3.0 Unported (CC BY-NC-SA 3.0)
openAccess
Copyright 2015 The Author(s)
https://creativecommons.org/licenses/by-nc-sa/3.0
publishDate 2015
publisher UiT Norges arktiske universitet
record_format openpolar
spelling ftunivtroemsoe:oai:munin.uit.no:10037/7740 2025-04-13T14:18:02+00:00 Sedimentary processes and paleoenvironments in Moskusoksefjord and Nordfjord, North-East Greenland. Olsen, Ingrid Leirvik 2015-05-15 https://hdl.handle.net/10037/7740 eng eng UiT Norges arktiske universitet UiT The Arctic University of Norway https://hdl.handle.net/10037/7740 Attribution-NonCommercial-ShareAlike 3.0 Unported (CC BY-NC-SA 3.0) openAccess Copyright 2015 The Author(s) https://creativecommons.org/licenses/by-nc-sa/3.0 VDP::Mathematics and natural science: 400::Geosciences: 450::Marine geology: 466 VDP::Matematikk og Naturvitenskap: 400::Geofag: 450::Marin geologi: 466 GEO-3900 Master thesis Mastergradsoppgave 2015 ftunivtroemsoe 2025-03-14T05:17:55Z Multi-proxy analyses of five sediment cores (including lithostratigraphy, physical properties and XRF-scanning) and analyses of swath bathymetry and high resolution seismic data were integrated in order to reconstruct the Holocene glacial history and paleoenvironment of Moskusoksefjord and inner parts of Nordfjord, North-East Greenland. In Moskusoksefjord, the large-scale bathymetry is divided into an inner-, middle- and outer basins, separated by relatively large deltas prograding into the fjord from both sides. Several slide scars and sediment lobes are also found, in addition to numerous channels. No glacial landforms have been observed in the study area apart from two transverse ridges in the outer basin of Moskusoksefjord which may represent buried glacial moraines. The seismostratigraphy revealed two main units with a stratified acoustic signature as well as MTDs of various dimensions. From their distribution, mass-transport activity in Moskusoksefjord and Nordfjord probably occurred episodically throughout the entire Holocene. Suspension settling, as well as mass-transport deposits and ice-rafting from icebergs and sea-ice are the main sedimentary processes of both fjords. The two main sources of sediment were theWaltershausen Gletscher and the river coming from Badlandal at the fjord head of Moskusoksefjord. The estimated average sedimentation rates are 58 cm/ka for the last ~8 ka and 85-446 cm/ka for the last 1 ka. Ice-rafting was of higher relative importance with increasing influence away from the glacier margin. However, rafting of material from icebergs and sea ice has proven to be of less importance in the two studied fjords than in other East-Greenland fjords (cf. Smith and Andrews, 2000). After retreating onto land during the warm Holocene Climate Optimum, Waltershausen Gletscher probably advanced into tidewater after a climate cooling ~6500 cal. yr. BP. An increase in the glacial activity continued through the Neoglaciation, with shorefast sea-ice suppressing iceberg rafting and an increase in ... Master Thesis East Greenland glacier Greenland Moskusoksefjord Sea ice Tidewater University of Tromsø: Munin Open Research Archive Greenland Moskusoksefjord ENVELOPE(-23.214,-23.214,73.644,73.644) Waltershausen Gletscher ENVELOPE(-24.417,-24.417,73.900,73.900)
spellingShingle VDP::Mathematics and natural science: 400::Geosciences: 450::Marine geology: 466
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450::Marin geologi: 466
GEO-3900
Olsen, Ingrid Leirvik
Sedimentary processes and paleoenvironments in Moskusoksefjord and Nordfjord, North-East Greenland.
title Sedimentary processes and paleoenvironments in Moskusoksefjord and Nordfjord, North-East Greenland.
title_full Sedimentary processes and paleoenvironments in Moskusoksefjord and Nordfjord, North-East Greenland.
title_fullStr Sedimentary processes and paleoenvironments in Moskusoksefjord and Nordfjord, North-East Greenland.
title_full_unstemmed Sedimentary processes and paleoenvironments in Moskusoksefjord and Nordfjord, North-East Greenland.
title_short Sedimentary processes and paleoenvironments in Moskusoksefjord and Nordfjord, North-East Greenland.
title_sort sedimentary processes and paleoenvironments in moskusoksefjord and nordfjord, north-east greenland.
topic VDP::Mathematics and natural science: 400::Geosciences: 450::Marine geology: 466
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450::Marin geologi: 466
GEO-3900
topic_facet VDP::Mathematics and natural science: 400::Geosciences: 450::Marine geology: 466
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450::Marin geologi: 466
GEO-3900
url https://hdl.handle.net/10037/7740