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Australian Journal of Earth Sciences
An International Geoscience Journal of the Geological Society of Australia
Volume 58, 2011 - Issue 6
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Research Papers

Proterozoic deformation in the east Pilbara Craton and tectonic setting of fault-hosted manganese at the Woodie Woodie mine

Pages 639-673 | Received 26 Apr 2011, Accepted 08 May 2011, Published online: 02 Aug 2011
 

Abstract

Neoarchean and Mesoproterozoic sequences in the Oakover Basin provide a record of deformation and sedimentation along the eastern edge of the Archean Pilbara Craton. The early extensional history of the Oakover Basin is overprinted by subsequent compressional events. Five distinct deformation events are recognised in the Woodie Woodie region; the Archean D1 event, comprising west-northwest–east-southeast extension associated with formation of the Neoarchean Hamersley Basin; the Mesoproterozoic D2a event, with northwest–southeast extension and basin formation associated with manganese mineralisation; the D2b event, with renewed extension associated with intrusion of Davis Dolerite during the ca 1090–1050 Ma Warakurna event; the D3 event, comprising northeast–southwest-directed compression attributed to the ca 900 Ma Edmundian Orogeny; the Neoproterozoic D4 event, with east-northeast–west-southwest extension producing large D4 grabens associated with the opening of the Officer Basin; and, the Neoproterozoic D5 event comprising north–south-directed compression attributed to the ca 550 Ma Paterson Orogeny. Abundant manganese deposits are hosted by the Neoarchean and Mesoproterozoic sequences in the Oakover Basin, including the large high-grade manganese deposits at Woodie Woodie. The orebodies are predominantly hydrothermal in origin, with a late supergene overprint, and deposition of primary manganese mineralisation was synchronous with northwest–southeast Mesoproterozoic D2a extension and basin formation. The manganese is associated with normal faults, and many of these represent growth faults related to basin formation. Stratabound manganese is found above or adjacent to fault-hosted manganese. An initial structural framework established during Archean rifting was reactivated in the D2a event and provided a major structural control on manganese distribution. High-grade manganese deposits at Woodie Woodie mine appear to be located in a zone of oblique dextral extension on major north-northwest- to north-trending faults that mark the eastern ‘active’ or faulted margin of an early rift basin. These large north-northwest-trending normal faults are linked to a major northwest-trending transform fault zone (Jewel-Southwest Fault Zone) that separates the Oakover Basin into a northern and southern basin. The transform fault represents a major deep fluid conduit for hydrothermal fluids and most likely accounts for the concentration of significant manganese occurrences immediately to the north and south of this structure.

Acknowledgements

First, thanks for all of the ongoing discussions and field trips with the CML geologists at Woodie Woodie. The fieldwork with Matt Painter and Michelle Hough was particularly enjoyable. Thanks to reviews of early versions of the manuscript by Brett Davis, and an ongoing education in geophysics by Gemma King. I am grateful to Franco Pirajno and Leon Bagas for their useful reviews of the manuscript. Thanks to Joe Drake-Brockman for his detailed geological maps of the Woodie Woodie mine corridor (1:5000 scale) and for his introduction to the geology of the mine corridor. Thanks to Tim Blake for his introduction in 2007 to the regional geology of the Woodie Woodie area.

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