期刊
ENGINEERING GEOLOGY
卷 214, 期 -, 页码 94-106出版社
ELSEVIER SCIENCE BV
DOI: 10.1016/j.enggeo.2016.09.017
关键词
Stability charts; Rock slope; Hoek-Brown criterion; Strength reduction technique; The weighting factor; Factor of safety
资金
- National Natural Science Foundation of China [51409206, 51409208]
- [2013KCT-15]
This study presents stability charts for estimating the stability of rockmass slopes that are suitable for the generalized Hoek-Brown (GHB) failure criterion based on the strength reduction technique. First, in order for implementing the GHB strength reduction, the estimation for the local Mohr-Coulomb (MC) friction angle and cohesive strength from the GHB criterion was incorporated into the strength reduction process in ABAQUS 6.10. Second, stability charts for calculating the FOS of rock slopes with a specific slope angle of beta = 45 degrees and D = 0 are proposed based on this method. Third, the disturbance weighting factors f(D) and slope angle weighting factor f(beta) are used to quantify the effect of the rock mass disturbance factor and slope angle on the rock slope stability evaluations. Combined with the stability charts based on beta = 45 degrees and D = 0, the weighting factor f(D) and f(beta) can be used to calculate the FOS of rock slopes with various slope angles under different blast damage and stress relief conditions. Finally, the stability charts were applied to two real case studies to illustrate the applicability and validity. The results for the two cases demonstrated good agreement with those from the other charts and the FEM software ABAQUS 6.10. The proposed charts provide a simple and straightforward way to estimate
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