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May 11, 2026International Journal of Coal Science & Technology1 citationsOpen Access

Analysis of a rock slope instability mechanism combining wedge and circular failure in a soft rock mass

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SYSifan YuanBDBingdong DingKGKai Guan

Key Points

  • This research aims to analyze a complex rock slope instability mechanism combining wedge and circular failures, particularly in soft rock masses.
  • Descriptive case study of a 25-m high, 38°-dipping bench at an abandoned open-pit mine in Spain.
  • Inclusion of rock mass characterization, kinematic analysis, and timeline of events.
  • Application of limit equilibrium and numerical modeling for assessing factors of safety.
  • Identified that wedge failure mechanisms can occur even with intersections slightly above slope face dip.
  • Factors of safety estimates provided for the described failure scenarios.
  • Facilitated understanding of potential soft rock failures, assisting in back analysis of similar cases and future slope designs.

Abstract

Abstract One of the most common failure mechanisms in rock slope stability analysis is wedge failure, where sliding of an element of a rock mass occurs along two pre-existing discontinuities, whose intersection daylights on the slope face. The kinematic analysis of this mechanism prescribes that failure can only take place when the intersection of both discontinuities at stake dips less than the slope face. However, when the intersection line of a wedge dips slightly more than the slope face, a modified version of this mechanism can occur. In this paper, the authors describe in detail an actual case study of this type of failure mechanism that occurred in a 25-m high, 38°-dipping bench of an abandoned open-pit mine in Spain. To illustrate how this phenomenon indeed takes place, a timeline description of events, intact rock and rock mass characterization and a detailed slope failure analysis are included. Moreover, indicative limit equilibrium and more accurate numerical modelling approaches are presented guiding how to estimate factors of safety against this complex type of instability mechanisms. Furthermore, some situations associated with soft rock where these and similar slope failure mechanisms could take place are discussed. These approaches can be of help for the purpose of back analyzing similar case studies and for designing slopes when potential failures of this type are prone to occur.

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Cite This Study

Yuan et al. (2026) studied this question.

synapsesocial.com/papers/6a0171ed3a9f334c28271f11https://doi.org/10.1007/s40789-026-00884-8
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