Comprehensive analysis of slope stability and determination of stable slopes in the Chador-Malu iron ore mine using numerical and limit equilibrium methods

M ATAEI, S BODAGHABADI
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引用次数: 21

Abstract

One of the critical aspects in mine design is slope stability analysis and the determination of stable slopes. In the Chador-Malu iron ore mine, one of the most important iron ore mines in central Iran, it was considered vital to perform a comprehensive slope stability analysis. At first, we divided the existing rock hosting pit into six zones and a geotechnical map was prepared. Then, the value of MRMR (Mining Rock Mass Rating) was determined for each zone. Owing to the fact that the Chador-Malu iron ore mine is located in a highly tectonic area and the rock mass completely crushed, the Hoek-Brown failure criterion was found suitable to estimate geo-mechanical parameters. After that, the value of cohesion (c) and friction angle (ö) were calculated for different geotechnical zones and relative graphs and equations were derived as a function of slope height. The stability analyses using numerical and limit equilibrium methods showed that some instability problems might occur by increasing the slope height. Therefore, stable slopes for each geotechnical zone and prepared sections were calculated and presented as a function of slope height.

用数值法和极限平衡法对Chador-Malu铁矿边坡稳定性进行综合分析,确定稳定边坡
边坡稳定性分析和稳定边坡的确定是矿山设计的关键问题之一。Chador-Malu铁矿是伊朗中部最重要的铁矿之一,对其进行边坡稳定性综合分析是至关重要的。首先,我们将现有的岩石承载坑划分为六个区域,并制作了岩土图。然后,确定每个区域的MRMR(采矿岩体等级)值。由于Chador-Malu铁矿位于高度构造区,岩体完全破碎,Hoek-Brown破坏准则适用于估算地力学参数。然后,计算了不同土工区的黏聚力(c)和摩擦角(ö)值,并推导了相应的随坡高变化的曲线图和方程。采用数值法和极限平衡法对边坡进行稳定性分析,结果表明,增加边坡高度会产生一定的失稳问题。因此,计算了每个土工区和准备断面的稳定斜率,并将其表示为边坡高度的函数。
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