The Assessment of the Overall Probability of Failure of Hard-rock Slopes Using the First Order Reliability Method and the Hunting Equation Method

The Assessment of the Overall Probability of Failure of Hard-rock Slopes Using the First Order Reliability Method and the Hunting Equation Method

Author: Charlie Harrison
Conference: GeoEdmonton 2018
Date: September 23-26, 2018

ABSTRACT
The overall probability of failure of a hard-rock slope is assessed using a combination of the First Order Reliability Method (FORM) and the Hunting Equation Method. FORM is used to assess the probability for each potential failure mode, which considers the correlation of the variables (e.g. discontinuity friction angle and cohesion). The overall probability of failure of the rock slope is then assessed using the Hunting Equation Method by combining every potential failure mode’s probability of failure.

The assessment outlined above is applied to a hard-rock slope that is not susceptible to rotational failure, which allows for the application of simple, closed form limit equilibrium methods for planar- and wedge-type failures in a spreadsheet. All the potential modes of failure for a slope, which could include multiple planar- and wedge -type failure mechanisms must be assessed individually. Consideration must also be given to multiple structural and geological domains within a slope, as the potential failure modes in each domain will need to be assessed and each domain may have a unique set of parameters that need to be assessed and correlated.

The author provides an example assessment of a typical rock slope located in the Coastal and Cascade Mountains, where hard rock slopes are in abundance. The potential failure modes are assessed, including the correlation of the variables. The overall probability of failure is assessed in the absence of rock support.

 

Download the full technical paper.

Download

Perspectivas recientes

Febrero 2024
Empoderamiento y Resiliencia
Enero 2024
Balancing Act: Water Usage Management Vital for a Sustainable Future
Enero 2024
A Difficult Balance Between Engineering, Environmental, Social and Economic Aspects
Noviembre 2023
Knight Piésold Commences with the ESIA for Haib Copper
Noviembre 2023
Insights from the Compilation and Critical Assessment of Breach and Runout Characteristics from Historical Tailings Dam Failures: Implications for Numerical Modelling
Noviembre 2023
Earthquake-induced Deformation Analysis of a TSF Undergoing Tailings Reprocessing
Noviembre 2023
Case Study: Approach to Determining the Risk Mitigation Priority of a Historic TSF in North America
Octubre 2023
Data Management and Insights for Effective Tailings Storage Facility Management
Octubre 2023
The Role of Sensitivity Analysis in Selecting Dam Breach Parameters
Octubre 2023
Influence of Increased Confining Stress on Undrained Behavior of Tailings: A Case History at the Candelaria Mine
Octubre 2023
The Re-use of Existing Bituminous Stabilised Materials for the Rehabilitation of National Route 7 - Case Study
Septiembre 2023
Transición energética para gerentes de mina
Agosto 2023
Interview: Guillermo Barreda, Gerente General, Knight Piésold Perú
Julio 2023
Selection of Soil Shear Strength Parameters Based on Integrated In Situ Tests, Lab Tests and Numerical Calibration Approach
Junio 2023
Leveraging Knowledge and Experience of a Well-Formed Independent Tailings Review Board to Enhance Tailings Facility Safety
Mayo 2023
Is the Implementation of Dry Stacking for Tailings Storage Increasing? A Southern African Perspective
Febrero 2023
Canadian Consulting Engineer's Lifetime Achievement Awards: Jeremy Haile
Febrero 2023
Geotechnical Characterization of Collapsible Salty Sands Subjected to Monotonic and Cyclic Loadings – A Case Study for Areas with High Seismicity
Noviembre 2022
Application of the 3D Limit Equilibrium Method in Tailings Dam Breach Analysis
Noviembre 2022
Evaluation of Tailings Behaviour for Dam Breach Assessment