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Correlation of Risk Analysis Method Results with Numerical and Limit Equilibrium Methods in Overall Slope Stability Analysis of Southern Wall of Chadormalu Iron Open Pit Mine-Iran

机译:伊朗乍得马鲁铁露天矿南壁整体边坡稳定性分析中风险分析方法结果与数值和极限平衡方法的相关性

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Slope stability analysis is one of the most important factors in designing open pit mines. Therefore an optimal slope design that supports both aspects of economy and safety is very significant. There are many different methods in slope stability analysis including empirical, limit equilibrium, block theory, numerical, and probabilistic methods. In this study, to analyze the overall slope stability of southern wall of Chadormalu iron open pit mine three numerical, limit equilibrium and probabilistic methods have been used. Software and methods that is used for analytical investigation in this study are FLAC software for numerical analysis, SLIDE software and circuit failure chart for limit equilibrium analysis and qualitative fault tree and semi-quantitative risk matrix for probabilistic analysis. The results of all above mentioned methods, was a circular failure occurrence in Metasomatite rock zone between 1405 to 1525 m levels. The main factors of failure occurrence in this range were heavily jointing and existing of faults. Safety factors resulted from numerical method; Circular chart method and SLIDE software are 1.16, 1.25 and 1.27 respectively. Regarding instability and safety factors in Metasomatite rock zone, in order to stabilize the given zone, some considerations such as bench angle and height reduction should be planned. In results of risk matrix method this zone was mentioned too as a high risk zone that numerical and limit equilibrium methods confirmed this.
机译:边坡稳定性分析是设计露天矿的最重要因素之一。因此,同时支持经济性和安全性的最佳坡度设计非常重要。边坡稳定性分析有许多不同的方法,包括经验方法,极限平衡方法,块理论,数值方法和概率方法。在这项研究中,为分析Chadormalu铁矿露天矿南壁的整体边坡稳定性,使用了三种数值,极限平衡和概率方法。本研究中用于分析研究的软件和方法是用于数值分析的FLAC软件,用于极限平衡分析的SLIDE软件和电路故障图以及用于概率分析的定性故障树和半定量风险矩阵。所有上述方法的结果都是在1405- 1525 m水平的变质岩带中发生了圆形破坏。在此范围内发生故障的主要因素是严重的接合和故障的存在。安全系数由数值方法得出;圆图法和SLIDE软件分别为1.16、1.25和1.27。关于变质岩带的不稳定性和安全性因素,为了稳定给定带,应计划一些考虑因素,例如工作台角度和减小高度。在风险矩阵方法的结果中,该区域也被视为高风险区域,数值和极限平衡方法证实了这一点。

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