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现代矿业 ›› 2026, Vol. 42 ›› Issue (02): 154-159.

• 岩土工程 • 上一篇    下一篇

某固废渣场对新建露天矿山边坡稳定性的影响分析

胡思汉1,2 陈国强1,2 郭吉葵1 吴 伟1 方嵩根1,3   

  1. 1. 中钢集团马鞍山矿山研究总院股份有限公司;2. 金属矿山开采安全与灾害防治全国重点实验室; 3. 华唯金属矿产资源高效循环利用国家工程研究中心有限公司
  • 出版日期:2026-02-25 发布日期:2026-03-17

Analysis on Influence of a Certain Solid Waste Landfill on the Stability of the Newly-built Open-pit Mine Slope

  1. 1. Sinosteel Maanshan General Institute of Mining Research Co.,Ltd.; 2. State Key Laboratory of Metal Mining Safety and Disaster Prevention and Control;3. Huawei National Engineering Research Center of High Efficiency Recycling of Metallic Mineral Resources Co.,Ltd.
  • Online:2026-02-25 Published:2026-03-17

摘要: 为揭示外部堆载对露天矿边坡稳定性的影响机制,定量分析不同厚度的保安矿柱对 矿山边坡稳定性的调控效应,为矿山选取安全高效、经济合理的方案提供理论依据。以某固废渣 场和拟新建露天矿山边坡为研究对象,在充分调查矿山及固废渣场工程和水文地质的基础上,采 用极限平衡法中的 Morgenstern-Price 法和简化 Bishop 法,对厚度 10~40 m 保安矿柱条件下的露天 矿山边坡稳定性进行计算。结果表明:固废渣场的存在改变了矿山边坡外部地形地貌,降雨入渗 及钛石膏渣的强吸水性,导致矿区南侧边坡受地下水影响,随着保安矿柱厚度增大,固废渣场地下 水对矿山边坡影响越来越小。采取保安矿柱的方式可有效增加矿山边坡稳定性。随着保安矿柱 厚度不断增大,矿山边坡安全系数变化速率呈现先快后慢的趋势。从安全及经济角度出发,在新 建矿山与固废渣场之间设置 30 m 厚的保安矿柱是最优选择,既满足边坡稳定性的规范要求,保障 矿山安全生产,又能兼顾经济性,避免因设置过厚的保安矿柱造成资源浪费。

关键词: 固废渣场, 边坡稳定性, 保安矿柱, 极限平衡法

Abstract: To reveal the mechanism of the influence of external loading on the stability of open-pit mine slopes,and to quantitatively analyze the regulatory effect of different thicknesses of safety pillars on the stability of the mine slopes,this study provides a theoretical basis for selecting safe,efficient,and eco⁃ nomically reasonable schemes for mines. Taking a certain solid waste landfill and the proposed newly-built open-pit mine slope as the research objects,based on thorough investigation of the engineering and hydro⁃ geological conditions of the mine and the solid waste landfill,the Morgenstern-Price method and the sim⁃ plified Bishop method in the limit equilibrium method were used to calculate the stability of the open-pit mine slope under the condition of a 10~40 m thick safety pillar. The results show that the existence of the solid waste landfill has changed the external topography and geomorphology of the mine slope. The infiltra⁃ tion of rainfall and the strong water absorption of titanium gypsum sludge have led to the southern slope of the mining area being affected by groundwater. As the thickness of the safety pillar increases,the influence of the groundwater of the solid waste landfill on the mine slope becomes smaller and smaller. The adoption of the safety pillar method can effectively increase the stability of the mine slope. With the continuous in⁃crease in the thickness of the safety pillar,the rate of change of the safety factor of the mine slope shows a trend of being faster at the beginning and then slower. From the perspectives of safety and economy,setting a 30 m thick safety pillar between the newly-built mine and the solid waste landfill is the optimal choice. It not only meets the requirements of slope stability norms,ensures the safety of the mine production,but al⁃ so takes into account economy and avoids resource waste caused by setting an overly thick safety pillar.

Key words: solid waste landfill, slope stability, safety pillar, limit equilibrium method