Abstract

Abstract Rock slopes with intermittent joints in open-pit mines are complex geological bodies composed of intact rock and discontinuous structural planes, and their stability analysis are necessary for mine disaster prevention. In this study, a series of base friction tests were performed to determine the failure process and displacement field evolution of rock slopes with intermittent joints using the speckle technique of a noncontact measurement system. Next, stability calculation models of the slopes were established from the energy perspective using the plastic limit analysis theory, and the effects of the joint inclination angle and coalescence coefficient of rock bridges on the slope stability were evaluated. The four main conclusions are as follows: (1) The failure of rock slopes with intermittent joints shows the feature of collapse-lower traction-upper push. (2) Based on the failure modes of rock bridges in slopes, the failure of rock slopes with intermittent joints could be divided into three types: tensile coalescence (type A), shear coalescence (type B), and tensile–shear coalescence (type C). (3) Among the three slope types, the stability of the type A slope is significantly influenced by rock cohesion, whereas that of the type B slope is significantly influenced by joint cohesion. The stability of type C slope is significantly influenced by the joint inclination angle and joint friction angle. (4) The local-stable slope is unstable while the first through-tensile crack in the zone of the potential sliding body higher than the critical instability height appeared. This study guides the stability evaluation and instability prediction of jointed rock slopes in open-pit mines.

Highlights

  • Version of Record: A version of this preprint was published at Lithosphere on February 1st, 2022

  • (2) Based on the failure modes of rock bridges in slopes, the failure of rock slopes with intermittent joints could be divided into three types: tensile coalescence (Type A), shear coalescence (Type B), and tensile–shear coalescence

  • The failure behavior of rock slopes with intermittent joints under the influence of gravity was investigated through base friction tests and plastic limit theory analysis

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Summary

Introduction

Version of Record: A version of this preprint was published at Lithosphere on February 1st, 2022. Rock slopes with intermittent joints in open-pit mines are complex geological bodies composed of intact rock and discontinuous structural planes, and their stability analysis are necessary for mine disaster prevention. This study guides the stability evaluation and instability prediction of jointed rock slopes in open-pit mines. Because the deformation and failure of rock slopes with intermittent joints are progressive and the failure mode is mostly influenced by the controlling structural plane, the deformation characteristics and failure mechanism of the slopes are complex (Scholtes and Donze, 2015; Zhou and Chen, 2019). An in-depth study of the propagation behavior of internal joints and the macroscopic instability mechanism of rock slopes with intermittent joints is useful for the stability evaluation and engineering treatment of jointed rock slopes in open-pit mines

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