Sedimentology of Late Precambrian storm-influenced pro-deltaic successions: Varanger, eastern Finnmark

This study investigates the sedimentology of the Klubbnasen and Andersby formations of the Late Precambrian (Neoproterozoic) succession in Varanger, eastern Finnmark. Additionally, the lower parts of the Fugleberget and Paddeby formations overlying the Klubbnasen and Andersby formations, respectivel...

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Main Author: Skorgenes, Julia
Format: Master Thesis
Language:English
Published: UiT Norges arktiske universitet 2020
Subjects:
Online Access:https://hdl.handle.net/10037/19778
id ftunivtroemsoe:oai:munin.uit.no:10037/19778
record_format openpolar
spelling ftunivtroemsoe:oai:munin.uit.no:10037/19778 2023-05-15T16:13:42+02:00 Sedimentology of Late Precambrian storm-influenced pro-deltaic successions: Varanger, eastern Finnmark Skorgenes, Julia 2020-09-15 https://hdl.handle.net/10037/19778 eng eng UiT Norges arktiske universitet UiT The Arctic University of Norway https://hdl.handle.net/10037/19778 openAccess Copyright 2020 The Author(s) Sedimentology VDP::Mathematics and natural science: 400::Geosciences: 450 VDP::Matematikk og Naturvitenskap: 400::Geofag: 450 GEO-3900 Master thesis Mastergradsoppgave 2020 ftunivtroemsoe 2021-06-25T17:57:46Z This study investigates the sedimentology of the Klubbnasen and Andersby formations of the Late Precambrian (Neoproterozoic) succession in Varanger, eastern Finnmark. Additionally, the lower parts of the Fugleberget and Paddeby formations overlying the Klubbnasen and Andersby formations, respectively, were superficially investigated in order to provide stratigraphic context. The investigated formations are part of the Vadsø Group, which have previously been interpreted to represent a syn-rift succession of Late Riphean age. The present study is based on extensive field work along the northern coastline of the Varangerfjorden and document storm-bed (i.e. tempestite) variability within the Klubbnasen and Andersby formations, and interpret their depositional environments and sequence stratigraphic development. Ten lithofacies were identified based on outcrop investigations, which further are grouped into four lithofacies associations reflecting outer shelf deposits (FA1), storm-influenced prodelta deposits (FA2), storm-influenced delta front deposits (FA3) and braided river deposits (FA4; only occurring in the Fugleberget and Paddeby formations). The numerous tempestite beds of Klubbnasen and Andersby formations were mainly governed by wave-enhanced turbidity currents and storm waves producing a variety of storm-bed architectures (e.g. wave-modified turbidite). Deposition of a typical tempestite (e.g. wave-modified turbidite) was typically preceded by erosion of strong, but decelerating, offshore-directed turbidity currents, which were followed by a gradually more oscillatory-dominated flow governed by storm waves. The beds are characterized by high aggradation rates where the bed-architecture was controlled by the temporal and spatial evolution of the two transporting agents. Seafloor topography may also have affected the deposition. The abundancy of soft-sediment deformation structures, including the presence of a laterally extensive slump deposit, suggest a trigger mechanism related to seismic activity. The cyclic stacking trend of that the Klubbnasen-Fugleberget and the Andersby-Paddeby formations and the sharp, erosive boundaries within these stratigraphic couplets, may suggest deposition within a seismically active rift-basin where the basin fill evolution was largely governed by hanging wall-subsidence and limited sediment supply (due to small catchment area).Periods of increasing subsidence rates may have led to the formation of marine flooding surfaces (as observed in the Klubbnasen and Andersby formations), while sudden uplifts of the footwall resulted in episodes of extensive erosion of the underlying deltaic units and the formation subaerial unconformities (as observed at the bases of the Fugleberget and Paddeby formations). Tectonic uplift and exposure of larger areas eventually promoted the generation of extensive braided river systems (as represented by the cross-bedded sandstone of the Fugleberget and Paddeby formations). Master Thesis Finnmark Vadsø Varanger Varangerfjord* Varangerfjorden Finnmark University of Tromsø: Munin Open Research Archive Andersby ENVELOPE(29.597,29.597,70.091,70.091) Fugleberget ENVELOPE(21.675,21.675,70.000,70.000) Klubbnasen ENVELOPE(29.200,29.200,70.114,70.114) Paddeby ENVELOPE(29.437,29.437,70.100,70.100) Vadsø ENVELOPE(29.749,29.749,70.073,70.073) Varangerfjorden ENVELOPE(30.000,30.000,70.000,70.000)
institution Open Polar
collection University of Tromsø: Munin Open Research Archive
op_collection_id ftunivtroemsoe
language English
topic Sedimentology
VDP::Mathematics and natural science: 400::Geosciences: 450
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450
GEO-3900
spellingShingle Sedimentology
VDP::Mathematics and natural science: 400::Geosciences: 450
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450
GEO-3900
Skorgenes, Julia
Sedimentology of Late Precambrian storm-influenced pro-deltaic successions: Varanger, eastern Finnmark
topic_facet Sedimentology
VDP::Mathematics and natural science: 400::Geosciences: 450
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450
GEO-3900
description This study investigates the sedimentology of the Klubbnasen and Andersby formations of the Late Precambrian (Neoproterozoic) succession in Varanger, eastern Finnmark. Additionally, the lower parts of the Fugleberget and Paddeby formations overlying the Klubbnasen and Andersby formations, respectively, were superficially investigated in order to provide stratigraphic context. The investigated formations are part of the Vadsø Group, which have previously been interpreted to represent a syn-rift succession of Late Riphean age. The present study is based on extensive field work along the northern coastline of the Varangerfjorden and document storm-bed (i.e. tempestite) variability within the Klubbnasen and Andersby formations, and interpret their depositional environments and sequence stratigraphic development. Ten lithofacies were identified based on outcrop investigations, which further are grouped into four lithofacies associations reflecting outer shelf deposits (FA1), storm-influenced prodelta deposits (FA2), storm-influenced delta front deposits (FA3) and braided river deposits (FA4; only occurring in the Fugleberget and Paddeby formations). The numerous tempestite beds of Klubbnasen and Andersby formations were mainly governed by wave-enhanced turbidity currents and storm waves producing a variety of storm-bed architectures (e.g. wave-modified turbidite). Deposition of a typical tempestite (e.g. wave-modified turbidite) was typically preceded by erosion of strong, but decelerating, offshore-directed turbidity currents, which were followed by a gradually more oscillatory-dominated flow governed by storm waves. The beds are characterized by high aggradation rates where the bed-architecture was controlled by the temporal and spatial evolution of the two transporting agents. Seafloor topography may also have affected the deposition. The abundancy of soft-sediment deformation structures, including the presence of a laterally extensive slump deposit, suggest a trigger mechanism related to seismic activity. The cyclic stacking trend of that the Klubbnasen-Fugleberget and the Andersby-Paddeby formations and the sharp, erosive boundaries within these stratigraphic couplets, may suggest deposition within a seismically active rift-basin where the basin fill evolution was largely governed by hanging wall-subsidence and limited sediment supply (due to small catchment area).Periods of increasing subsidence rates may have led to the formation of marine flooding surfaces (as observed in the Klubbnasen and Andersby formations), while sudden uplifts of the footwall resulted in episodes of extensive erosion of the underlying deltaic units and the formation subaerial unconformities (as observed at the bases of the Fugleberget and Paddeby formations). Tectonic uplift and exposure of larger areas eventually promoted the generation of extensive braided river systems (as represented by the cross-bedded sandstone of the Fugleberget and Paddeby formations).
format Master Thesis
author Skorgenes, Julia
author_facet Skorgenes, Julia
author_sort Skorgenes, Julia
title Sedimentology of Late Precambrian storm-influenced pro-deltaic successions: Varanger, eastern Finnmark
title_short Sedimentology of Late Precambrian storm-influenced pro-deltaic successions: Varanger, eastern Finnmark
title_full Sedimentology of Late Precambrian storm-influenced pro-deltaic successions: Varanger, eastern Finnmark
title_fullStr Sedimentology of Late Precambrian storm-influenced pro-deltaic successions: Varanger, eastern Finnmark
title_full_unstemmed Sedimentology of Late Precambrian storm-influenced pro-deltaic successions: Varanger, eastern Finnmark
title_sort sedimentology of late precambrian storm-influenced pro-deltaic successions: varanger, eastern finnmark
publisher UiT Norges arktiske universitet
publishDate 2020
url https://hdl.handle.net/10037/19778
long_lat ENVELOPE(29.597,29.597,70.091,70.091)
ENVELOPE(21.675,21.675,70.000,70.000)
ENVELOPE(29.200,29.200,70.114,70.114)
ENVELOPE(29.437,29.437,70.100,70.100)
ENVELOPE(29.749,29.749,70.073,70.073)
ENVELOPE(30.000,30.000,70.000,70.000)
geographic Andersby
Fugleberget
Klubbnasen
Paddeby
Vadsø
Varangerfjorden
geographic_facet Andersby
Fugleberget
Klubbnasen
Paddeby
Vadsø
Varangerfjorden
genre Finnmark
Vadsø
Varanger
Varangerfjord*
Varangerfjorden
Finnmark
genre_facet Finnmark
Vadsø
Varanger
Varangerfjord*
Varangerfjorden
Finnmark
op_relation https://hdl.handle.net/10037/19778
op_rights openAccess
Copyright 2020 The Author(s)
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