An Open-Source Algorithm for 3D ROck Slope Kinematic Analysis (ROKA)

Author:

Menegoni NiccolòORCID,Giordan Daniele,Perotti CesareORCID

Abstract

The Markland test is one of the most diffused and adopted methods of kinematic analysis for the identification of critical intersections of rock discontinuities that could generate rock failures. Traditionally, the kinematic analysis is based on the use of a stereographic approach that is able to identify the critical combination between the orientations of discontinuities and the rock wall. The recent improvements in the use of Digital Outcrop Models (DOMs) created the conditions for the development of a new automatized approach. We present ROck Slope Kinematic Analysis (ROKA) which is an open-source algorithm aimed at performing the Kinematic Analysis using the discontinuity measures collected onto a 3D DOM. The presented algorithm is able to make a local identification of the possible critical combination between the identified discontinuities and the orientation of the slope. Using this approach, the algorithm is able to identify on the slope the presence of critical combinations according to the traditional kinematic analysis of planar failure, flexural toppling, wedge failure, and direct toppling modes of failures and then visualize them on DOMs. In this way, the traditional approach is more effective and can be adopted for a more detailed analysis of large and complex areas.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference48 articles.

1. Rock Slope Stability;Kliche,1999

2. Plane failure in rock slopes – A review on stability analysis techniques

3. Discussion of “Graphical Stability Analysis of Slopes in Jointed Rock”

4. A Useful Technique for Estimating the Stability of Rock Slopes When the Rigid Wedge Slide Type of Failure Is Expected;Markland,1972

5. Methods of Geological Engineering in Discontinuous Rocks;Goodman,1976

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