A Comprehensive Numerical Modeling Study for Parameter Optimization and Slope Stability Analysis in the Baganuur Lignite Coal Mine

Mining Pub Date : 2023-11-22 DOI:10.3390/mining3040041
Bilguun Enkhbold, H. Ikeda, H. Toriya, Tsuyoshi Adachi
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Abstract

The “Baganuur” lignite coal mine is one of the biggest open cast mines in Mongolia. However, there is a huge challenge in managing the stability of its internal dump, which prevents the proper operation of the mine and has an impact on the economy. To solve the internal dump slope stability problem, this study focused on incorporating the inherent mechanical properties of the rock material to build numerical models of the internal dump. By applying two software programs from Rocscience (Phase2 and Slide) and four different methods, the finite element method, the Bishop method, the Janbu simplified method, and the Spencer simplified method, the current and improved internal dump parameters were numerically simulated and analyzed. Based on the properties of the rock, the LEM and FEM were used to determine the parameters that could have an impact on the stability of the internal waste dump. The impacts of the internal dump height, dip angle, and safety berm on these parameters were studied. This study covers several analytical methods for calculating safety factors. Based on the results of the numerical simulation, it is determined that it is possible to increase the internal dump capacity by approximately 56% at a 50 m height and 28° dip angle and using a 15 m safety berm. Under similar conditions, this study presents an optimum SRF at 40 m height, 28° dip angle, and 5 m safety berm. Based on the numerical models, it is found that changes in the dip angle have a greater impact than changes in the dump height on the slope stability of an internal dump.
巴加努尔褐煤矿参数优化和边坡稳定性分析的综合数值建模研究
巴嘎努尔 "褐煤矿是蒙古最大的露天煤矿之一。然而,管理其内部倾卸场的稳定性是一个巨大的挑战,这阻碍了煤矿的正常运行,并对经济产生了影响。为解决内部倾弃场边坡稳定性问题,本研究重点结合岩石材料的固有机械特性,建立内部倾弃场的数值模型。通过应用 Rocscience 的两个软件程序(Phase2 和 Slide)和四种不同的方法(有限元法、Bishop 法、Janbu 简化法和 Spencer 简化法),对当前和改进后的内部倾弃场参数进行了数值模拟和分析。根据岩石的特性,利用 LEM 和 FEM 确定了可能对内部垃圾堆放场稳定性产生影响的参数。研究了内部倾倒高度、倾角和安全护堤对这些参数的影响。这项研究涵盖了几种计算安全系数的分析方法。根据数值模拟的结果,可以确定在高度为 50 米、倾角为 28°、使用 15 米安全护堤的情况下,内部垃圾堆放场的容量可增加约 56%。在类似条件下,本研究提出了高度为 40 米、倾角为 28°、安全护堤为 5 米的最佳 SRF。根据数值模型,可以发现倾角的变化比倾卸高度的变化对内部倾卸的边坡稳定性影响更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.80
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