Structural analysis of Turtle Mountain: origin and influence of fractures in the development of rock slope failures

Author:

Pedrazzini Andrea1,Jaboyedoff Michel1,Froese Corey R.2,Langenberg C. Willem3,Moreno Francisco2

Affiliation:

1. Institut de Géomatique et d'Analyse du Risque – IGAR, AMPHIPOLE; University of Lausanne, CH-1015 Lausanne, Switzerland

2. Alberta Geological Survey/Energy Resources Conservation Board, 4999-98 Avenue, Edmonton, Alberta, T6B 2X3, Canada

3. Long Mountain Research Inc., 11439-56 Avenue, Edmonton, Alberta, T6H 0Y1, Canada

Abstract

AbstractLarge slope failures in fractured rocks are often controlled by the combination of pre-existing tectonic fracturing and brittle failure propagation in the intact rock mass during the pre-failure phase. This study focuses on the influence of fold-related fractures and of post-folding fractures on slope instabilities with emphasis on Turtle Mountain, located in SW Alberta (Canada). The structural features of Turtle Mountain, especially to the south of the 1903 Frank Slide, were investigated using a high-resolution digital elevation model combined with a detailed field survey. These investigations allowed the identification of six main discontinuity sets influencing the slope instability and surface morphology. According to the different deformation phases affecting the area, the potential origin of the detected fractures was assessed. Three discontinuity sets are correlated with the folding phase and the others with post-folding movements. In order to characterize the rock mass quality in the different portions of the Turtle Mountain anticline, the geological strength index (GSI) has been estimated. The GSI results show a decrease in rock mass quality approaching the fold hinge area due to higher fracture persistence and higher weathering. These observations allow us to propose a model for the potential failure mechanisms related to fold structures.

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

Reference45 articles.

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