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The quaternary coversands of southwest France

  • Luca Sitzia
  • , Pascal Bertran
  • , Jean Jacques Bahain
  • , Mark D. Bateman
  • , Marion Hernandez
  • , Henri Garon
  • , Guillaume de Lafontaine
  • , Norbert Mercier
  • , Chantal Leroyer
  • , Alain Queffelec
  • , Pierre Voinchet
  • Université de Bordeaux
  • INRAP
  • Muséum national d'histoire naturelle
  • University of Sheffield
  • Université Laval
  • Laboratoire ArchéoSciences

Research output: Contribution to journalArticlepeer-review

44 Scopus citations

Abstract

Detailed stratigraphic analysis and numerical dating (OSL, IRSL, ESR, 14C) of Pleistocene coversands in southwest France enable the construction of a renewed chronostratigraphic framework for sand deposition. The chronological data obtained from sandsheet units testify to the development of transgressive dunefields since at least the Middle Pleistocene (MIS 10). Three main phases of accumulation occurred during the Last Glacial. The oldest one (64-42 ka) is associated with wet sandsheet facies, histic horizons and zibar-type dune fields, which reflect deposition in a context strongly influenced by the groundwater table. The Late Pleniglacial (24-14 ka) corresponds to the main phase of coversand extension in a drier context. Silty gley horizons suggest, however, local interruptions of sand drifting during GS 2.1. Lateglacial stabilization of the coversands may not have occurred before GI-1c (Allerød), which was typified by the development of cumulic arenosols. These were covered by parabolic dunes during the Younger Dryas. The variations in extent of the emerged continental shelf during the glacial-interglacial cycles may explain the uneven geographical distribution of sand deposition through time. Because of coastline retreat up to 100km north of 45°N during the LGM lowstand, the coversands were unable to reach the northern part of the basin. Comparison with other European regions highlights stronger affinities of the French record with Portugal than with the Netherlands and Great Britain, probably because of reduced influence of permafrost.

Original languageEnglish
Pages (from-to)84-105
Number of pages22
JournalQuaternary Science Reviews
Volume124
DOIs
StatePublished - 5 Sep 2015
Externally publishedYes

Keywords

  • Coversand
  • ESR
  • Middle and Late Pleistocene
  • OSL
  • Palaeosols
  • Southwest France

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