Practical Use of Modified Hoek–Brown Criterion for Soil Slope Stability Analysis

被引:0
|
作者
Daniel R. VandenBerge
Michael P. McGuire
机构
[1] Tennessee Technological University,
[2] Lafayette College,undefined
关键词
Hoek Brown; Nonlinear; Shear strength reduction; Slope stability; Finite element; Finite difference;
D O I
暂无
中图分类号
学科分类号
摘要
Many slopes are comprised of soils that exhibit a nonlinear shear strength or failure envelope, and multiple mathematical relationships have been developed to account for this nonlinearity. At the same time, the numerical shear strength reduction (SSR) method has become a common method for analyzing the stability of slopes. Despite these developments, a practical, commercially available method to include nonlinear shear strength in numerical analysis has not been established for soil. The Generalized Hoek–Brown (GHB) model provides a nonlinear failure criterion, but is formulated for use with rock. This paper proposes a Modified Hoek–Brown (MHB) criterion to make the model applicable to soil and leverage the GHB criterion present in many numerical analysis packages. Past applications of SSR to the GHB are discussed and a numerical method for reduction of the parameters in the context of soil slopes is proposed. A simple wedge analysis validates the MHB method for a linear envelope. Three examples of increasing complexity compare results of limit equilibrium with both finite element and finite difference SSR analyses. In general, the different numerical methods yield very similar results. The SSR method using MHB predicts critical strength reduction factors 2–5% lower than the limit equilibrium factors of safety. The approach presented in this paper allows practitioners to model nonlinear shear strength in finite element strength reduction analysis for cases where this nonlinearity is judged to be an important factor.
引用
收藏
页码:5441 / 5455
页数:14
相关论文
共 50 条
  • [41] Rock Slope Analysis with Nonlinear Hoek–Brown Criterion Incorporating Equivalent Mohr–Coulomb Parameters
    Vinay Kumar
    Navneet Himanshu
    Avijit Burman
    Geotechnical and Geological Engineering, 2019, 37 : 4741 - 4757
  • [42] Determination of Mohr-Coulomb Shear Strength Parameters from Generalized Hoek-Brown Criterion for Slope Stability Analysis
    Shen, Jiayi
    Priest, S. D.
    Karakus, M.
    ROCK MECHANICS AND ROCK ENGINEERING, 2012, 45 (01) : 123 - 129
  • [43] Sandstone Slope Stability Analysis Under Wetting-Drying Cycles Based on Generalized Hoek-Brown Failure Criterion
    Kang, Kai
    Huang, Shiyuan
    Liu, Wenhua
    Cheng, Hu
    Fomenko, Igor
    Zhou, Yuxin
    FRONTIERS IN EARTH SCIENCE, 2022, 10
  • [44] Modified Hoek-Brown failure criterion for anisotropic rocks
    Shi, Xiangchao
    Yang, Xu
    Meng, Yingfeng
    Li, Gao
    ENVIRONMENTAL EARTH SCIENCES, 2016, 75 (11)
  • [45] Wellbore-Stability Analysis by Integrating a Modified Hoek-Brown Failure Criterion With Dual-Porochemoelectroelastic Theory
    Liu, Chao
    Han, Yanhui
    Liu, Hui-Hai
    Abousleiman, Younane N.
    SPE JOURNAL, 2019, 24 (05): : 1957 - 1981
  • [46] Rock slope stability assessment based on the critical failure state curve for the generalized Hoek-Brown criterion
    Zhang, Wenlian
    Sun, Xiaoyun
    Yuan, Wei
    Liu, Ting
    Jin, Shenyi
    ENVIRONMENTAL EARTH SCIENCES, 2024, 83 (06)
  • [47] Strength reduction strategy for rock slope stability using the variation principle based on the Hoek–Brown failure criterion
    Shihong Hu
    Liang Li
    Lianheng Zhao
    Shi Zuo
    Dongliang Huang
    Bulletin of Engineering Geology and the Environment, 2023, 82
  • [48] PROBABILISTIC ASSESSMENT OF ROCK SLOPE STABILITY IN OPEN PIT MINE CHAARAT USING THE GENERALIZED HOEK–BROWN CRITERION
    K. Kang
    I. K. Fomenko
    J. Wang
    O. V. Nikolskaya
    Journal of Mining Science, 2020, 56 : 732 - 740
  • [49] Wellbore stability analysis of fractured formations based on Hoek-Brown failure criterion
    Ma, Tianshou
    Yang, Zixin
    Chen, Ping
    INTERNATIONAL JOURNAL OF OIL GAS AND COAL TECHNOLOGY, 2018, 17 (02) : 143 - 171
  • [50] Upper bound analysis and calculation comparison for rock slope stability with Hoek-Brown failure criterion based on strength reduction technique
    Zhao, L. H.
    Deng, D. P.
    Huang, F.
    Lin, Y. L.
    MODELLING AND COMPUTATION IN ENGINEERING, 2010, : 153 - 157