Three-Dimensional Discrete Element Analysis of Jointed Rock Slope Stability Based on the Universal Elliptical Disc Model

被引:0
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作者
Shui-Hua Jiang
Jia-Dong Chen
Ze Zhou Wang
Jun Zheng
Jinsong Huang
Qing Lü
机构
[1] Nanchang University,School of Infrastructure Engineering
[2] National University of Singapore,Department of Civil and Environmental Engineering
[3] Zhejiang University,College of Civil Engineering and Architecture
[4] The University of Newcastle,Discipline of Civil, Surveying and Environmental Engineering, Faculty of Engineering and Built Environment
关键词
Jointed rock slopes; Slope stability; Discrete element analysis; Discrete fracture network; Universal elliptical disc model; 3DEC;
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学科分类号
摘要
A three-dimensional representation of the random distribution of fractures in rock masses, known as the discrete fracture network (DFN), is widely used to analyze the stability of jointed rock slopes. In this paper, a new framework for constructing three-dimensional DFN models in rock masses has been proposed to overcome the limitations of conventional circular or polygon-based models. The framework utilizes the universal elliptical disc (UED) model and integrates it with the discrete element method in 3DEC for the stability evaluation of jointed rock slopes. This paper starts by introducing the basic principles of the UED model. The procedures for constructing a three-dimensional DFN using the UED model is then outlined. In the present study, a case study of a rock slope in Zhejiang Province, China is used to demonstrate the implementation of the proposed framework. A comprehensive comparative study is conducted to investigate the impacts of several UED model parameters, including the ratio of major axis to minor axis and rotation angle, and discontinuity density, on the stability of rock slopes and compared to the conventional Baecher disc model. The results show that the framework can effectively integrate the UED model into 3DEC and provide a realistic representation of the three-dimensional DFN, leading to improved accuracy and efficiency in the stability evaluation of jointed rock slopes. The framework also shed light on the interactive effects of the UED model parameters and discontinuity density on the rock slope stability, providing a strong reference for using the UED model in constructing DFN models for rock slopes.
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页码:505 / 525
页数:20
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