Provenance Evaluation of Lower Cretaceous in the Stappen High Area and Implications for Reservoir Development

Master's thesis in Petroleum Geosciences Engineering Southeast directed fluvio-deltaic systems transported across Svalbard during Early Cretaceous are age correlated to southeast progradation deposits in the in Fingerdjupet Subbasin. Both local (few km) and distal (>300 km) source regions ha...

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Main Author: Usken, Bjarte
Other Authors: Lotsberg Bryn, Bjørn Kåre, Luz Marin Restrepo, Dora, Augustsson, Ingrid Carita
Format: Master Thesis
Language:unknown
Published: University of Stavanger, Norway 2020
Subjects:
Online Access:https://hdl.handle.net/11250/2682388
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author Usken, Bjarte
author2 Lotsberg Bryn, Bjørn Kåre
Luz Marin Restrepo, Dora
Augustsson, Ingrid Carita
author_facet Usken, Bjarte
author_sort Usken, Bjarte
collection University of Stavanger: UiS Brage
description Master's thesis in Petroleum Geosciences Engineering Southeast directed fluvio-deltaic systems transported across Svalbard during Early Cretaceous are age correlated to southeast progradation deposits in the in Fingerdjupet Subbasin. Both local (few km) and distal (>300 km) source regions has been suggested for this system. The recent exploration well 7321/4-1 drilled on the flank of the basin encountered sandstones in the Lower Cretaceous interval. This well data has not been implemented in the previous studies. This study uses detrital zircon U/Pb geochronology from well 7321 / 4-1 and 7322 / 7-1 in the Fingerdjupet Subbasin to interpret the source of coarse grain sediments. Palynological analyses, well and seismic data are integrated to interpret the distribution of the sandstones encountered in recent well 7321 / 4-1. The aim of this study is to evaluate the provenance of Lower Cretaceous sandstones in encountered by well 7321 / 4-1 and the implications for reservoir development in the Fingerdjupet Subbasin. Two seismic units (SU1 and SU2) is defined based on seismic downlap terminations and seismically guided well correlations. The SU1 shows wedge-shaped packages thickening towards fault in the central part of the basin. The SU2 consist of the encountered by well 7321/4-1 and is characterized by shelf-edge clinoforms that prograded southeast into the basin. The dominant detrital zircon age populations in SU2 unit from well 7321 / 4-1 is: (1) 2.6- 2.75, (2) 1.7-1.5 Ga and (3) 1.2-1 Ga. Only a few Detrital Zircon ages were measured in well 7322 / 7-1 and it was thus not possible to compare the result with this well. By comparing Detrital Zircon Ages from the SU2 unit with Lower Cretaceous formations on Svalbard and in the Barents shelf, it became clear that both regions contain similar dominant age distribution. The source of sediment is interpreted to originate from north Greenland and/or Arctic Canada based on the similar detrital age distribution and the southwestern progradation direction of the ...
format Master Thesis
genre Arctic
Greenland
North Greenland
Svalbard
genre_facet Arctic
Greenland
North Greenland
Svalbard
geographic Arctic
Svalbard
Canada
Greenland
geographic_facet Arctic
Svalbard
Canada
Greenland
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institution Open Polar
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op_collection_id ftunivstavanger
op_relation Masteroppgave/UIS-TN-IER/2020;
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publisher University of Stavanger, Norway
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spelling ftunivstavanger:oai:uis.brage.unit.no:11250/2682388 2025-06-08T14:00:06+00:00 Provenance Evaluation of Lower Cretaceous in the Stappen High Area and Implications for Reservoir Development Usken, Bjarte Lotsberg Bryn, Bjørn Kåre Luz Marin Restrepo, Dora Augustsson, Ingrid Carita 2020-07-28 application/pdf https://hdl.handle.net/11250/2682388 unknown University of Stavanger, Norway Masteroppgave/UIS-TN-IER/2020; https://hdl.handle.net/11250/2682388 petroleumsgeologi VDP::Matematikk og Naturvitenskap: 400::Geofag: 450::Petroleumsgeologi og -geofysikk: 464 VDP::Teknologi: 500::Berg‑ og petroleumsfag: 510::Geoteknikk: 513 Master thesis 2020 ftunivstavanger 2025-05-16T03:36:59Z Master's thesis in Petroleum Geosciences Engineering Southeast directed fluvio-deltaic systems transported across Svalbard during Early Cretaceous are age correlated to southeast progradation deposits in the in Fingerdjupet Subbasin. Both local (few km) and distal (>300 km) source regions has been suggested for this system. The recent exploration well 7321/4-1 drilled on the flank of the basin encountered sandstones in the Lower Cretaceous interval. This well data has not been implemented in the previous studies. This study uses detrital zircon U/Pb geochronology from well 7321 / 4-1 and 7322 / 7-1 in the Fingerdjupet Subbasin to interpret the source of coarse grain sediments. Palynological analyses, well and seismic data are integrated to interpret the distribution of the sandstones encountered in recent well 7321 / 4-1. The aim of this study is to evaluate the provenance of Lower Cretaceous sandstones in encountered by well 7321 / 4-1 and the implications for reservoir development in the Fingerdjupet Subbasin. Two seismic units (SU1 and SU2) is defined based on seismic downlap terminations and seismically guided well correlations. The SU1 shows wedge-shaped packages thickening towards fault in the central part of the basin. The SU2 consist of the encountered by well 7321/4-1 and is characterized by shelf-edge clinoforms that prograded southeast into the basin. The dominant detrital zircon age populations in SU2 unit from well 7321 / 4-1 is: (1) 2.6- 2.75, (2) 1.7-1.5 Ga and (3) 1.2-1 Ga. Only a few Detrital Zircon ages were measured in well 7322 / 7-1 and it was thus not possible to compare the result with this well. By comparing Detrital Zircon Ages from the SU2 unit with Lower Cretaceous formations on Svalbard and in the Barents shelf, it became clear that both regions contain similar dominant age distribution. The source of sediment is interpreted to originate from north Greenland and/or Arctic Canada based on the similar detrital age distribution and the southwestern progradation direction of the ... Master Thesis Arctic Greenland North Greenland Svalbard University of Stavanger: UiS Brage Arctic Svalbard Canada Greenland
spellingShingle petroleumsgeologi
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450::Petroleumsgeologi og -geofysikk: 464
VDP::Teknologi: 500::Berg‑ og petroleumsfag: 510::Geoteknikk: 513
Usken, Bjarte
Provenance Evaluation of Lower Cretaceous in the Stappen High Area and Implications for Reservoir Development
title Provenance Evaluation of Lower Cretaceous in the Stappen High Area and Implications for Reservoir Development
title_full Provenance Evaluation of Lower Cretaceous in the Stappen High Area and Implications for Reservoir Development
title_fullStr Provenance Evaluation of Lower Cretaceous in the Stappen High Area and Implications for Reservoir Development
title_full_unstemmed Provenance Evaluation of Lower Cretaceous in the Stappen High Area and Implications for Reservoir Development
title_short Provenance Evaluation of Lower Cretaceous in the Stappen High Area and Implications for Reservoir Development
title_sort provenance evaluation of lower cretaceous in the stappen high area and implications for reservoir development
topic petroleumsgeologi
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450::Petroleumsgeologi og -geofysikk: 464
VDP::Teknologi: 500::Berg‑ og petroleumsfag: 510::Geoteknikk: 513
topic_facet petroleumsgeologi
VDP::Matematikk og Naturvitenskap: 400::Geofag: 450::Petroleumsgeologi og -geofysikk: 464
VDP::Teknologi: 500::Berg‑ og petroleumsfag: 510::Geoteknikk: 513
url https://hdl.handle.net/11250/2682388