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The mixed‐bed glacial landform imprint of the North Sea Lobe in the western North Sea

  • David H. Roberts
  • , Elena Grimoldi
  • , Louise Callard
  • , David J. A. Evans
  • , Chris D. Clark
  • , Heather A. Stewart
  • , Dayton Dove
  • , Margot Saher
  • , Colm O'Cofaigh
  • , Richard C. Chiverrell
  • , Mark D. Bateman
  • , Steven G. Moreton
  • , Tom Bradwell
  • , Derek Fabel
  • , Alicia Medialdea
  • Durham University
  • University of Sheffield
  • NERC (British Geological Survey)
  • University of Cologne
  • University of Liverpool
  • University of Stirling
  • Scottish Universities Environmental Research Centre
  • Natural Environment Research Council (NERC)

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Abstract

During the last glacial cycle an intriguing feature of the British‐Irish Ice Sheet was the North Sea Lobe (NSL); fed from the Firth of Forth and which flowed south and parallel to the English east coast. The controls on the formation and behaviour of the NSL have long been debated, but in the southern North Sea recent work suggests the NSL formed a dynamic, oscillating terrestrial margin operating over a deforming bed. Further north, however, little is known of the behaviour of the NSL or under what conditions it operated. This paper analyses new acoustic, sedimentary and geomorphic data in order to evaluate the glacial landsystem imprint and deglacial history of the NSL offshore from NE England. Subglacial tills (AF2/3) form a discontinuous mosaic interspersed with bedrock outcrops across the seafloor, with the partial excavation and advection of subglacial sediment during both advance and retreat producing mega‐scale glacial lineations and grounding zone wedges. The resultant ‘mixed‐bed’ glacial landsystem is the product of a dynamic switch from a terrestrial piedmont‐lobe margin with a net surplus of sediment to a partially erosive, quasi‐stable, marine‐terminating, ice stream lobe as the NSL withdrew northwards. Glaciomarine sediments (AF4) drape the underlying subglacial mixed‐bed imprint and point to a switch to tidewater conditions between 19.9 and 16.5 ka cal BP as the North Sea became inundated. The dominant controls on NSL recession during this period were changing ice flux through the Firth of Forth ice stream onset zone and water depths at the grounding line; the development of the mixed‐bed landsystem being a response to grounding line instability. © 2018 John Wiley & Sons, Ltd.
Original languageEnglish
Pages (from-to)1233-1258
JournalEarth Surface Processes and Landforms
Volume44
Issue number6
Early online date12 Dec 2018
DOIs
Publication statusPublished - May 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 14 - Life Below Water
    SDG 14 Life Below Water

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