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Late Paleozoic extensional reactivation of the Rheic–Rhenohercynian suture zone in SW England, the English Channel and Western Approaches

Andrew C. Alexander, Robin K. Shail and Brian E. Leveridge
Geological Society, London, Special Publications, 470, 4 January 2019, https://doi.org/10.1144/SP470.19
Andrew C. Alexander
Siccar Point Energy Limited, H1 Building, Hill of Rubislaw, Anderson Drive, Aberdeen AB15 6B, UK
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  • For correspondence: andy.alexander@siccarpointenergy.co.uk
Robin K. Shail
Camborne School of Mines, College of Engineering, Mathematics and Physical Sciences, University of Exeter, Penryn TR10 9FE, UK
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Brian E. Leveridge
8 Orchard Way, Willand Old Village, Cullompton EX15 2SG, UK
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Abstract

The Rheic Ocean is a persistent feature of Paleozoic palaeogeographies whose closure contributed to the development of the Variscan Orogen and the formation of Pangaea. Geological and geophysical data indicate repeated episodes of Paleozoic rifting and plate convergence around SW England and the adjacent offshore areas. SW England occupied a lower plate position during the Devonian–Carboniferous, on the northern passive margin of the short-lived Rhenohercynian Ocean that had formed near a recently closed segment of the Rheic Ocean. Variscan plate convergence resulted in the development of the composite southwards-dipping Rheic–Rhenohercynian suture zone by the latest Devonian and inversion of the lower plate basins during the Carboniferous. Early Permian NNW–SSE extensional reactivation of this suture zone controlled the development of the Western Approaches basins in its hanging wall and provides an excellent example of Wilson cycle structural inheritance. The onshore expression of this episode includes shear zones and detachment faults consistent with top-to-the-SSE extensional reactivation of Variscan thrust faults. There is a progression to higher-angle brittle extensional faults that cut out earlier structures. Exhumation of the lower plate was accompanied by Early Permian mantle and concomitant crustal partial melting, the construction of the Cornubian Batholith and W–Sn–Cu fracture-hosted mineralization.

  • © 2019 The Author(s). Published by The Geological Society of London. All rights reserved

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Geological Society, London, Special Publications: 473 (1)
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Late Paleozoic extensional reactivation of the Rheic–Rhenohercynian suture zone in SW England, the English Channel and Western Approaches

Andrew C. Alexander, Robin K. Shail and Brian E. Leveridge
Geological Society, London, Special Publications, 470, 4 January 2019, https://doi.org/10.1144/SP470.19
Andrew C. Alexander
Siccar Point Energy Limited, H1 Building, Hill of Rubislaw, Anderson Drive, Aberdeen AB15 6B, UK
  • Find this author on Google Scholar
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  • Search for this author on this site
  • For correspondence: andy.alexander@siccarpointenergy.co.uk
Robin K. Shail
Camborne School of Mines, College of Engineering, Mathematics and Physical Sciences, University of Exeter, Penryn TR10 9FE, UK
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Brian E. Leveridge
8 Orchard Way, Willand Old Village, Cullompton EX15 2SG, UK
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Late Paleozoic extensional reactivation of the Rheic–Rhenohercynian suture zone in SW England, the English Channel and Western Approaches

Andrew C. Alexander, Robin K. Shail and Brian E. Leveridge
Geological Society, London, Special Publications, 470, 4 January 2019, https://doi.org/10.1144/SP470.19
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  • Article
    • Abstract
    • The Rheic–Rhenohercynian suture zone
    • Lower plate: SW England
    • Upper plate: Normannia (Mid-German Crystalline Rise)
    • Variscan convergence
    • Extensional reactivation of Variscan structures in the Rheic–Rhenohercynian suture zone
    • Early Permian magmatism during extensional reactivation of the suture zone
    • Implications of geophysical observations for the Rheic–Rhenohercynian suture
    • Synthesis and tectonic model
    • Conclusions
    • Acknowledgements
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