A dextral strike-slip model for the Miri Structure

Mustaffa Kamal Shuib, . (2003) A dextral strike-slip model for the Miri Structure. Bulletin of the Geological Society of Malaysia, 47. pp. 95-103. ISSN 2637-109X

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Abstract

The Miri Structure shows complex geometry as a result of interplay between compression and tensional wrenching. Evidences for strike slip deformation are illustrated. These include the presence of: 1. En-echelon normal fault arrangements along a major fault with dominant normal throw (Shell Hill Fault), often accompanied by reverse fault throws and dip reversals along individual faults showing the following features: • Conjugate fault systems (synthetic and antithetic) • Small-scale faults showing negative and positive flower structures • Oblique and down-dip striations • “Ribbon effect” geometry 2. A dextral strike slip fault zone named the Canada Hill “Thrust” Zone, characterized by: • Sub-horizontal striations • Fault zone associated with both compressional and extensional structure • Thrusts and extensional faults showing cross-cutting relationships in a single section 3. Presence of push-up block/ridge bounded by the Shell Hill Fault and Canada Hill Thrust zone. 4. Curved horse-tail configuration. The main conclusions from this study are as follows: 1. The 4 sets of structural elements associated with the Miri Structure are coeval. 2. They are the result of a progressive NNE-trending dextral strike-slip deformational event. Dextral strike-slip movement could have initiated early prior to lithification and continued after lithification.

Item Type: Article
Creators: Mustaffa Kamal Shuib, .
Title: A dextral strike-slip model for the Miri Structure
Date: December 2003
Location: Geological Society of Malaysia website
Publication: Geological Society of Malaysia
Volume: 47
Physical Description: 9p.
Agency Name: Universiti Putra Malaysia (UPM)
Date Deposited: 16 Apr 2025 08:23
Last Modified: 16 Apr 2025 08:23
URI: http://myagric.upm.edu.my/id/eprint/22846

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