Discrete Element Simulation Analysis of the Bending and Toppling Failure Mechanisms of High Rock Slopes

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Abstract

The high rock slope situated in the Southwest stope of Taiping Mining, Inner Mongolia, is subject to dumping failure due to its instability. The dumping body rock layer of this stope shows obvious bending and lowering of the head. The overturning angle of the rock strata can reach 46°, and tension dislocation along the rock joint can be observed in exposed sections and at the bedding and lithologic interface. The sliding surface also displays a broken line morphology. Through evaluation of regional rock integrity parameters and rock soft and hard parameters, rock-mass strength based on Hoek Brown strength estimation criteria can be developed. Based on the discrete element method, the geological model of layered excavation of the thin layer slope can be constructed. Combined with indoor and outdoor assessments, the characteristics of toppling deformation of the thin layer open-air slope can be studied and summarized. In this study, simulation analysis showed that under first excavation conditions, a crack-, dump-, and antislip zone was formed. The rock in the crack zone formed a "

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Meng, Z., Hou, Y., Guo, L., Wang, F., Liu, K., Qi, G., & Ma, J. (2021). Discrete Element Simulation Analysis of the Bending and Toppling Failure Mechanisms of High Rock Slopes. Geofluids, 2021. https://doi.org/10.1155/2021/6681641

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