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Research ArticleArticles

Chapter 4 Geological development and regional significance of an oceanic magmatic arc and its sedimentary cover: Permian Brook Street Terrane, South Island, New Zealand

Alastair H. F. Robertson and Romesh Palamakumbura
Geological Society, London, Memoirs January 2019, 49 (1) 43-73; DOI: https://doi.org/10.1144/M49.11
Alastair H. F. Robertson
School of GeoSciences, University of Edinburgh, Grant Institute, James Hutton Road, Edinburgh EH9 3FE, UK
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  • For correspondence: Alastair.Robertson@ed.ac.uk
Romesh Palamakumbura
School of GeoSciences, University of Edinburgh, Grant Institute, James Hutton Road, Edinburgh EH9 3FE, UK
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Abstract

The c. 450 km-long Brook Street Terrane (pre-Alpine Fault displacement) sheds light on processes of arc magmatism and related sedimentation. A very thick (up to 15 km) succession accumulated south of the Alpine Fault in the Takitimu Mountains during the Early Permian. Predominant arc-flank talus is intercalated with basic extrusive and intrusive igneous rocks. Volcaniclastic sediments mainly accumulated by mass-flow and turbidity current processes. The sediments were mostly derived from differentiated, arc-core, basaltic–andesitic rocks, contrasting with less evolved arc-flank flows and minor intrusions. Some igneous rocks are mildly enriched, supporting an extensional back-arc setting. After volcanism ended, Middle–Late Permian mixed carbonate–volcaniclastic gravity-flow deposits were derived from a non-exposed carbonate platform. Other volcanogenic successions in the south (Bluff, Riverton) represent smaller eruptive centres. In contrast, north of the Alpine Fault (e.g. Nelson), volcanism began with mostly felsic tuffaceous gravity-flow deposits, followed by extrusion/intrusion of clinopyroxene-rich, primitive magmas, related to arc rifting, and ended with an accumulation of a mixed basic–felsic volcaniclastic forearc apron. Taking account of regional comparisons, the Early Permian arc is interpreted as having formed adjacent to Gondwana (on accreted or trapped oceanic lithosphere), whereas the lithologies north of the Alpine Fault represent contrasting Late Permian continental arc magmatism.

  • © 2019 The Author(s). Published by The Geological Society of London. All rights reserved
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Geological Society, London, Memoirs: 49 (1)
Geological Society, London, Memoirs
Vol. 49, Issue 1
1 Jan 2019
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Chapter 4 Geological development and regional significance of an oceanic magmatic arc and its sedimentary cover: Permian Brook Street Terrane, South Island, New Zealand
Alastair H. F. Robertson, Romesh Palamakumbura
Geological Society, London, Memoirs Jan 2019, 49 (1) 43-73; DOI: 10.1144/M49.11

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Chapter 4 Geological development and regional significance of an oceanic magmatic arc and its sedimentary cover: Permian Brook Street Terrane, South Island, New Zealand
Alastair H. F. Robertson, Romesh Palamakumbura
Geological Society, London, Memoirs Jan 2019, 49 (1) 43-73; DOI: 10.1144/M49.11
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    • Regional setting of the Brook Street Terrane
    • Methods and materials
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Cited By...

  • Chapter 1 Introduction to Paleozoic-Mesozoic geology of South Island, New Zealand: subduction-related processes adjacent to SE Gondwana
  • Chapter 8 Mid-Late Permian Upukerora Formation, South Island, New Zealand: fault-controlled mass wasting of the Early Permian Dun Mountain ophiolite and initiation of the Permian-Triassic Maitai continental margin forearc basin
  • Chapter 10 Sedimentary geochemistry used to infer the provenance of Permian-Triassic marine sandstones related to the SE Gondwana active continental margin, South Island, New Zealand
  • Chapter 13 Permian-Triassic felsic tuffs in South Island, New Zealand: significance for oceanic and active continental margin subduction
  • Chapter 11 Geochemistry used to infer source characteristics and provenance of mudrocks of the Permian-Triassic Maitai Group and the associated Patuki Melange, South Island, New Zealand
  • Chapter 9 Sedimentary development of the Mid-Permian-Mid-Triassic Maitai continental margin forearc basin, South Island, New Zealand
  • Chapter 15 Construction of a Paleozoic-Mesozoic accretionary orogen along the active continental margin of SE Gondwana (South Island, New Zealand): summary and overview
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More in this TOC Section

  • Chapter 5 Correlations between a heterogeneous mantle and multiple stages of crustal growth: a review of the Dun Mountain ophiolite, New Zealand
  • Chapter 6 Coupled deformation and melt-migration events recording subduction initiation, Dun Mountain ophiolite, New Zealand
  • Chapter 7 Patuki and Croisilles melanges in South Island, New Zealand: genesis related to Permian subduction–accretion processes
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