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DOI10.1016/j.earscirev.2021.103687
Evolution of the East Gondwana convergent margin in Antarctica, southern Australia and New Zealand from the Neoproterozoic to latest Devonian
Glen R.A.; Cooper R.A.
发表日期2021
ISSN00128252
卷号220
英文摘要New insights into the Late Precambrian-latest Devonian evolution of the Pacific margin of Gondwana are obtained by treating the margin in terms of three key tectonic elements: i) the in situ part of the Ross Orogen of Eastern Antarctica (Wilson Terrane) built on, and fringing, older crust; ii) the largely in situ southern Tasmanides of eastern Australia; and iii) offshore basement and island arc terranes now accreted either to the Ross Orogen, the Tuhua Orogen of southwestern New Zealand or, in one case, to the Australian Tasmanides. Detailed correlations between these elements suggest that the onset of convergence was essentially simultaneous along the margin over an original distance of ~1000 km. The first appearance of subduction-related igneous rocks occurred at ~540–530 Ma in the Tasmanides; ~535–530 Ma in the Tiger Arc of northern Victoria Land; and 550 Ma in southern Victoria Land of the Ross Orogen. New correlations of this paper suggest possible but largely unconstrained trajectories of offshore terranes. The Bowers Terrane was accreted to the East Gondwana margin at 491-489 Ma, producing the main Ross Orogeny. The adjoining Takaka Terrane had docked briefly with that margin at ~497–494 Ma (Haupiri Disturbance in New Zealand) before crustal extension rifted it oceanward to drift away in the latest Cambrian to become amalgamated with the sedimentary Buller Terrane at ~387 Ma. The West Tasmania Terrane was accreted to the East Gondwana margin beginning at~500 Ma (generating phase 3 of the Tyennan Orogeny) and the connected Selwyn Block to the Tasmanides at ~500 Ma (main Delamerian Orogeny). Our new interpretations suggest that previous lithological correlations of subduction-related volcanics between the Ross Orogen and southern Tasmanides did not take into account major rollback in the Tasmanides from ~514 to ~503 Ma. Similarly, they suggest that the ~550–480 Ma Granite Harbour Intrusive roots of the continental margin Ross Arc are not correlatives of 514, 505 and ~495–470 Ma granites intruding the Kanmantoo Group in the Delamerian Orogen of South Australia, either in time or in tectonic setting. We also recognize an early (~520–516 Ma) boninitic infant arc event in the outboard West Tasmania, Bowers, and Takaka terranes that predated ~500 Ma more mature arcs in the last two terranes. Arc-related magmatism in the Ross Orogen reflects the interplay between two main subduction systems — that which generated the Ross Arc and an outboard one that generated intraoceanic arcs. Three major turbidite fan systems developed along the East Gondwana margin as responses to major deformations. Early Cambrian fan system 1 postdates the Beardmore Orogeny and includes the Kanmantoo Group in the Delamerian Orogen and the Berg and upper Priestley formations in the Wilson Terrane. Cambrian-Ordovician fan system 2 (the Robertson Bay Group, the Swanson Group in Marie Byrd Land, the Greenland Group in the Buller Terrane and the St Arnaud Group in the Delamerian Orogen) and Lower-Middle Ordovician fan system 3 (turbidites of the Eastern Lachlan Orogen, the Buller Terrane (New Zealand) and East Tasmania Terrane) both postdate different parts of the Ross Orogeny. Cessation of fan system 3 at ~460-458 Ma correlates with ‘accretion’ of the Robertson Bay Terrane in northern Victoria Land. © 2021 Elsevier B.V.
关键词Convergent marginEast GondwanaRoss OrogenSubductionTasmanidesTuhua Orogen
英文关键词convergent margin; Devonian; extensional tectonics; Gondwana; orogeny; Proterozoic; rifting; subduction; tectonic setting; Antarctica; Australia; New Zealand; Tasmania
语种英语
来源期刊Earth Science Reviews
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/204035
作者单位Department of Earth and Environmental Sciences, Macquarie UniversityNSW 2109, Australia; GNS Science, PO Box 30368, Lower Hutt, 5040, New Zealand
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Glen R.A.,Cooper R.A.. Evolution of the East Gondwana convergent margin in Antarctica, southern Australia and New Zealand from the Neoproterozoic to latest Devonian[J],2021,220.
APA Glen R.A.,&Cooper R.A..(2021).Evolution of the East Gondwana convergent margin in Antarctica, southern Australia and New Zealand from the Neoproterozoic to latest Devonian.Earth Science Reviews,220.
MLA Glen R.A.,et al."Evolution of the East Gondwana convergent margin in Antarctica, southern Australia and New Zealand from the Neoproterozoic to latest Devonian".Earth Science Reviews 220(2021).
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