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铜铅山露天坑回填与深部矿体开采协同稳定性分析

Synergistic stability analysis of open-pit backfilling and deep orebody mining in Tongqianshan

  • 摘要: 为探究铜铅山露天坑回填与深部矿体开采的协同稳定性特征,以现场工程条件为基础,采用Flac3D三维数值模拟方法,构建覆盖露天历史开采、地下采掘、露天回填及深部长期回采的全过程仿真模型,系统分析回填体、围岩、水平隔离矿柱及4 585 m阶段巷道的位移、应力与塑性损伤演化规律。结果表明:露天回填期间,回填体最大压缩沉降6.0~7.0 cm,坑底岩体附加沉降−1.0~−1.5 cm,巷道累计附加沉降−0.9~−1.2 cm,应力与损伤基本无变化,回填对地下工程扰动微弱;地下开采过程中,覆岩、矿柱与回填体变形协调、可控,矿岩应力重分布规律合理,关键结构未出现贯通性破坏;露天回填与深部开采具备良好协同稳定性,研究成果可为露天转地下矿山安全高效开采提供理论依据与技术支撑。

     

    Abstract: Based on field engineering conditions, this study conducted a three-dimensional FLAC3D numerical simulation and established a whole-process simulation model, covering historical open-pit mining, underground excavation, open-pit backfilling, and long-term deep stoping, to explore the synergistic stability characteristics of open-pit backfilling and deep orebody mining in Tongqianshan. The evolution patterns of displacement, stress and plastic damage of the backfill, surrounding rock, horizontal isolation pillar and roadways at the 4 585 m level were systematically analyzed. The results show that during open-pit backfilling, the maximum compressive settlement of the backfill ranges from 6.0 to 7.0 cm, the additional settlement of the pit-bottom rock mass is −1.0 to −1.5 cm, and the cumulative additional settlement of the roadways is −0.9 to −1.2 cm, with basically no changes in stress and damage, indicating that backfilling exerts slight disturbance on underground workings. During underground mining, the deformation of the overlying rock, pillar, and backfill remains coordinated and controllable, the ore and rock masses exhibit reasonable stress redistribution, and no through-going failure occurs in key structures. Open-pit backfilling and deep mining exhibit good synergistic stability. The research findings can provide a theoretical basis and technical support for safe and efficient mining in mines transitioning from open pit to underground operation.

     

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