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Shear zones of the Maud Belt, Antarctica : kinetics and deformation mechanisms

Includes bibliographical references.

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Bibliographic Details
Main Author: McGibbon, David
Other Authors: Fagereng, Ake
Format: Thesis
Language:English
Published: Department of Geological Sciences 2014
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access_status_str Open Access
author McGibbon, David
author2 Fagereng, Ake
author_browse Fagereng, Ake
McGibbon, David
author_facet Fagereng, Ake
McGibbon, David
author_sort McGibbon, David
collection Thesis
description Includes bibliographical references.
format Thesis
id oai:open.uct.ac.za:11427/9607
institution University of Cape Town (South Africa)
language eng
last_indexed 2026-06-10T12:44:16.707Z
license_str Not specified — see source repository
provenance_str_mv Harvested via OAI-PMH from UCTD — University of Cape Town Open Access Repository
publishDate 2014
publishDateRange 2014
publishDateSort 2014
publisher Department of Geological Sciences
publisherStr Department of Geological Sciences
record_format dspace
source_str UCTD — University of Cape Town Open Access Repository
spelling oai:open.uct.ac.za:11427/9607 Shear zones of the Maud Belt, Antarctica : kinetics and deformation mechanisms McGibbon, David Fagereng, Ake Diener, JFA Includes bibliographical references. The rocks of the Maud Belt, western Dronning Maud Land, Antarctica, have experienced at least two deformation phases related to the Grenvillian and Pan- African orogenies. Deformation is heterogeneous and strain is commonly localized within shear zones. The two study areas H.U. Sverdrupfjella and Neumayerskarvet mainly consist of paragneisses and orthogneisses and in places migmatites and granite intrusions. The orthogneisses and paragneisses mainly consist of coarse to medium grained quartz, feldspar and biotite and in places hornblende, garnet and epidote. The rock types only differ in the proportion of these minerals, the paragneisses having a higher proportion of biotite than the orthogneisses. Both study areas contain well developed lineations, defined by elongated quartz grains and in places hornblende and epidote, and a S₁+₂ foliation defined by biotite. The foliation is related to the shear zones in the region which are commonly sub-horizontal but locally sub-vertical in eastern Neumayerskarvet. In eastern Neumayerskarvet the paragneisses wrap around the competent orthogneiss units, resulting in sub-vertical strike-slip shear zones alongside the competent orthogniess units. Two differently orientated lineations are found in the study areas, a weak, shallow plunging, E-trending lineation that occurs within the host rock and always alongside a well developed, shallow plunging, SE-trending lineation. Within the shear zones only the SE-trending lineation is found. The presence of only the SE-trending lineation in the shear zones implies that the SE-trending lineation is associated with a more recent deformation phase, D₂, and that the weak Etrending lineation is associated with an older deformation phase, D₁. Two major collisional events affected the region, the Grenvillian (~1300 Ma to ~900 Ma) and the Pan-African (~600 Ma to ~450 Ma). D₂ is therefore likely associated with the Pan-African orogeny and D₁ with the older Grenvillian orogeny. Evidence for D₁ is distributed broadly within the host rock and is absent from the shear zones. If D₁ localized shear zones did exist, they have been overprinted by D₂. The presence of only D₂ in the shear zones implies that strain in D₂ was localized. The strain partitioning into narrow shear zones during the more recent deformation phase could be due to pre-existing fabrics from an earlier deformation phase. Superposition of later deformation into zones of pre-existing fabrics could be typical of areas that have experienced multiple deformation phases. 2014-11-14T19:45:49Z 2014-11-14T19:45:49Z 2014 Master Thesis Masters MSc http://hdl.handle.net/11427/9607 eng application/pdf Department of Geological Sciences Faculty of Science University of Cape Town
spellingShingle McGibbon, David
Shear zones of the Maud Belt, Antarctica : kinetics and deformation mechanisms
thesis_degree_str Master's
title Shear zones of the Maud Belt, Antarctica : kinetics and deformation mechanisms
title_full Shear zones of the Maud Belt, Antarctica : kinetics and deformation mechanisms
title_fullStr Shear zones of the Maud Belt, Antarctica : kinetics and deformation mechanisms
title_full_unstemmed Shear zones of the Maud Belt, Antarctica : kinetics and deformation mechanisms
title_short Shear zones of the Maud Belt, Antarctica : kinetics and deformation mechanisms
title_sort shear zones of the maud belt antarctica kinetics and deformation mechanisms
url http://hdl.handle.net/11427/9607
work_keys_str_mv AT mcgibbondavid shearzonesofthemaudbeltantarcticakineticsanddeformationmechanisms