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昆明冶金高等专科学校学报 ›› 2021, Vol. 37 ›› Issue (5): 28-.DOI: 10.3969/j.issn.1009-0479.2021.05.005

• 资源开发与测绘 • 上一篇    下一篇

基于采矿环境再造的空区顶板-矿柱系统协同作用

周晓超   

  1. 昆明有色冶金设计研究院股份公司,云南昆明650051
  • 收稿日期:2021-06-15 出版日期:2021-10-31 发布日期:2023-08-30
  • 作者简介:周晓超(1988-),男,辽宁朝阳人,工程师,工学硕士,主要从事矿山岩石力学与采矿设计研究工作。

Synergism of Goaf Roof-Pillar System Based on Mining Environment Reconstruction

ZHOUXiaochao   

  1. (KunmingDesign&ResearchInstituteofNonferrousMetallurgyCo.,Ltd,Kunming650051,China)
  • Received:2021-06-15 Online:2021-10-31 Published:2023-08-30

摘要: 为研究空区系统动态演化过程中的协同稳定规律,运用三维有限元3D-σ,以某具体工程实际为背景进行了空区顶板-矿柱系统协同作用研究,得出各模拟方案顶板-矿柱系统安全率、塑性区和应力场的分布;探索了空区系统协同处理模式力学响应;从协同理念出发,为保证后续矿体安全开采提出块石充填采矿环境再造技术进行矿体原有环境修复方案。有限元研究结果表明:协同发展具有条件性,当顶板跨度为15m、20m、30m时对应协同矿柱结构尺寸为3m、45m和6m,空区系统顶板为大理岩、玄武岩时极限暴露面积指标分别为1000m2、1600m2;以现有方式进行后续矿体开采,应力集中现象明显,顶板最大拉应力为3496MPa,低于围岩极限强度,安全率为0924,低于临界状态;在块石充填环境改造后,最大拉应力降至1655MPa,安全率为1.229,应力场、安全率明显改善,能确保后续矿体开采期间系统协同稳定。

关键词: 空场法, 顶板-矿柱系统, 采矿环境再造, 协同作用, 数值模拟

Abstract: In order to study the rule of synergism of goaf system in the process of dymanmic evolution , 3D- finite element method is used. Based  the practioce of a specific project,the synergism of roof-pillarsystem in goaf is studied, and the safety rate,plastic zone and stress fieM distribution of roof pillar systemin each simulation scheme are obtained , the mechanical response of cooperative process ing mode d voidsystem is explored.From the concept of ynergism ,to guarantee the subsequent ore which is mined safe-ly,the mining environment reoonstnuction of waste filling technology is proposed to proceed with the origi-nal environmental modification of ore body. 'The results of FEM prove that collaborative development isconditional. When the roof span is 15 m,20 m and 30 m, the corresponding coondinated pillar stnucturedimensions are 3 m,4.5 m and 6 m. 'The index of limiting exposed awea are respectively 1 000 m3 ,1 600 m'with the rod of goaf system being as marble and basalt. 'The concentration d stress intensifieswith existing way to mine follow-up ore.'T'he maximum ternsion stress of rod reaches 3.496 MPa, which isinferior to the peak strength d surrounding rock and the safety rate d 0.924 is far below critical state.When the ore envirorment is transfomed by waste filling,the maximum tension stress reduces to1.655 MPa,and the safety ratio rises to 1.229.'The stress field and safety ratio are improved and thesynergism of system can be confirmed during the mining prooess of subsequent ore.

Key words: open-stopemethod, roof-pillarsystem, miningenvironmentregenerating, synergism, numericalsimulation

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