Sedimentary architecture and landforms of the late Saalian (MIS 6) ice sheet margin offshore of the Netherlands

Reconstructing the growth and decay of palaeo-ice sheets is critical to understanding the relationships between global climate and sea-level change and to testing numerical ice sheet models. In this study, we integrate recently acquired high-resolution 2D seismic reflection and borehole datasets fro...

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Main Authors: Cartelle, V., Barlow, N.L.M., Hodgson, D.M., Busschers, F.S., Cohen, K.M., Meijninger, B.M.L., van Kesteren, W.P.
Other Authors: Geomorfologie
Language:English
Published: 2021
Subjects:
Online Access:https://dspace.library.uu.nl/handle/1874/412832
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spelling ftunivutrecht:oai:dspace.library.uu.nl:1874/412832 2023-12-10T09:49:40+01:00 Sedimentary architecture and landforms of the late Saalian (MIS 6) ice sheet margin offshore of the Netherlands Cartelle, V. Barlow, N.L.M. Hodgson, D.M. Busschers, F.S. Cohen, K.M. Meijninger, B.M.L. van Kesteren, W.P. Geomorfologie 2021-11-02 application/pdf https://dspace.library.uu.nl/handle/1874/412832 eng eng https://dspace.library.uu.nl/handle/1874/412832 info:eu-repo/semantics/OpenAccess 2021 ftunivutrecht 2023-11-15T23:18:15Z Reconstructing the growth and decay of palaeo-ice sheets is critical to understanding the relationships between global climate and sea-level change and to testing numerical ice sheet models. In this study, we integrate recently acquired high-resolution 2D seismic reflection and borehole datasets from two wind-farm sites offshore of the Netherlands to investigate the sedimentary, geomorphological, and glaciotectonic records left by the Saalian Drenthe substage glaciation, when Scandinavian land ice reached its southernmost extent in the southern North Sea (ca. 160 ka, Marine Isotope Stage 6). A complex assemblage of glaciogenic sediments and glaciotectonic structures is buried in the shallow subsurface. The northern wind-farm site revealed a set of NE–SW-oriented subglacial meltwater channels filled with till and glaciofluvial sediments and an E–W-trending composite ridge with local evidence of intense glaciotectonic deformation that denotes the maximum limit reached by the ice. Based on the identified glacial geomorphology, we refine the mapping of the maximum ice sheet extent offshore, revealing that the ice margin morphology is more complex than previously envisaged and displaying a lobate shape. Ice retreat left an unusual paraglacial landscape characterised by the progressive infilling of topographic depressions carved by ice-driven erosion and a diffuse drainage network of outwash channels. The net direction of outwash was to the west and southwest into a nearby glacial basin. We demonstrate the utility of offshore wind-farm data as records of process–form relationships preserved in buried landscapes, which can be utilised in refining palaeo-ice sheet margins and informing longer-term drivers of change in low-relief settings. Other/Unknown Material Ice Sheet Utrecht University Repository
institution Open Polar
collection Utrecht University Repository
op_collection_id ftunivutrecht
language English
description Reconstructing the growth and decay of palaeo-ice sheets is critical to understanding the relationships between global climate and sea-level change and to testing numerical ice sheet models. In this study, we integrate recently acquired high-resolution 2D seismic reflection and borehole datasets from two wind-farm sites offshore of the Netherlands to investigate the sedimentary, geomorphological, and glaciotectonic records left by the Saalian Drenthe substage glaciation, when Scandinavian land ice reached its southernmost extent in the southern North Sea (ca. 160 ka, Marine Isotope Stage 6). A complex assemblage of glaciogenic sediments and glaciotectonic structures is buried in the shallow subsurface. The northern wind-farm site revealed a set of NE–SW-oriented subglacial meltwater channels filled with till and glaciofluvial sediments and an E–W-trending composite ridge with local evidence of intense glaciotectonic deformation that denotes the maximum limit reached by the ice. Based on the identified glacial geomorphology, we refine the mapping of the maximum ice sheet extent offshore, revealing that the ice margin morphology is more complex than previously envisaged and displaying a lobate shape. Ice retreat left an unusual paraglacial landscape characterised by the progressive infilling of topographic depressions carved by ice-driven erosion and a diffuse drainage network of outwash channels. The net direction of outwash was to the west and southwest into a nearby glacial basin. We demonstrate the utility of offshore wind-farm data as records of process–form relationships preserved in buried landscapes, which can be utilised in refining palaeo-ice sheet margins and informing longer-term drivers of change in low-relief settings.
author2 Geomorfologie
author Cartelle, V.
Barlow, N.L.M.
Hodgson, D.M.
Busschers, F.S.
Cohen, K.M.
Meijninger, B.M.L.
van Kesteren, W.P.
spellingShingle Cartelle, V.
Barlow, N.L.M.
Hodgson, D.M.
Busschers, F.S.
Cohen, K.M.
Meijninger, B.M.L.
van Kesteren, W.P.
Sedimentary architecture and landforms of the late Saalian (MIS 6) ice sheet margin offshore of the Netherlands
author_facet Cartelle, V.
Barlow, N.L.M.
Hodgson, D.M.
Busschers, F.S.
Cohen, K.M.
Meijninger, B.M.L.
van Kesteren, W.P.
author_sort Cartelle, V.
title Sedimentary architecture and landforms of the late Saalian (MIS 6) ice sheet margin offshore of the Netherlands
title_short Sedimentary architecture and landforms of the late Saalian (MIS 6) ice sheet margin offshore of the Netherlands
title_full Sedimentary architecture and landforms of the late Saalian (MIS 6) ice sheet margin offshore of the Netherlands
title_fullStr Sedimentary architecture and landforms of the late Saalian (MIS 6) ice sheet margin offshore of the Netherlands
title_full_unstemmed Sedimentary architecture and landforms of the late Saalian (MIS 6) ice sheet margin offshore of the Netherlands
title_sort sedimentary architecture and landforms of the late saalian (mis 6) ice sheet margin offshore of the netherlands
publishDate 2021
url https://dspace.library.uu.nl/handle/1874/412832
genre Ice Sheet
genre_facet Ice Sheet
op_relation https://dspace.library.uu.nl/handle/1874/412832
op_rights info:eu-repo/semantics/OpenAccess
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