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现代矿业 ›› 2026, Vol. 42 ›› Issue (03): 54-60.

• 采矿工程 • 上一篇    下一篇

某铜矿软岩巷道地压监测与破坏规律研究

齐 炎1,2 饶运章2 刘 亮1 樊忠华1 任建平1 黄崇杰1 高佳豪1   

  1. 1. 中国瑞林工程技术股份有限公司;2. 江西理工大学矿业工程学院
  • 出版日期:2026-03-25 发布日期:2026-04-07

Research on Ground Pressure Monitoring and Failure Law of Soft Rock Roadway in a Copper Mine

QI Yan1,2 RAO Yunzhang2 LIU Liang1 FAN Zhonghua1 REN Jianping1 HUANG Chongjie1 GAO Jiahao1   

  1. 1. China Nerin Engineering Co. Ltd.; 2. College of Mining Engineering,Jiangxi University of Science and Technology
  • Online:2026-03-25 Published:2026-04-07

摘要: 随着某铜矿开采深度持续增加,高地应力诱发软岩巷道围岩大变形,严重威胁矿山 安全生产。为揭示软岩巷道变形机理、确定最优支护时机,构建巷道地压监测体系,开展井下围岩 应力与变形长期监测试验。结果表明:巷道水平应力变化幅度显著大于垂直应力,左帮围岩最大 应力变化值达 20.16 MPa;巷道两帮及顶板位移主要集中于监测前 21 d,最大变形量 62.2 mm,水平 位移整体呈先快速变化、后渐趋稳定的规律。基于巷道破坏成因与防控措施分析,采用 FLAC 有限 差分软件开展支护数值模拟,结果显示:监测第 10 d 实施支护时,巷道最大水平应力 47.5 MPa,最 大垂直应力 32 MPa,围岩最大变形量较第 5 d、第 15 d 支护分别降低 19%、28.67%。现场应用验证, 优化支护方案下巷道顶板、两帮变形量较原方案分别减小 20.8%、17.3%,巷道稳定性得到有效控 制。研究成果可为深部软岩巷道支护设计及地压灾害防控提供理论依据与技术指导。

关键词: 深部开采, 软岩巷道, 地压监测, 数值模拟

Abstract: With the continuous increase of mining depth in a copper mine,high ground stress induc‐ es large deformation of surrounding rock of soft rock roadway,which seriously threatens the safe produc‐ tion of the mine. In order to reveal the deformation mechanism of soft rock roadway and determine the opti‐ mal support time,the monitoring system of roadway ground pressure is constructed,and the long-term monitoring test of stress and deformation of underground surrounding rock is carried out. The results show that the horizontal stress variation of the roadway is significantly greater than the vertical stress,and the maximum stress variation of the surrounding rock of the left side is 20.16 MPa. The displacement of the two sides and the roof of the roadway is mainly concentrated in the first 21 days of monitoring,and the maxi‐ mum deformation is 62.2 mm. The horizontal displacement changes rapidly and then tends to be stable. Based on the analysis of the causes of roadway failure and prevention and control measures,FLAC finite difference software is used to carry out numerical simulation of support. The results showed that when the support was implemented on the 10 th day of monitoring,the maximum horizontal stress of the roadway is 47.5 MPa and the maximum vertical stress is 32 MPa. The maximum deformation of surrounding rock is 19% and 28.67% lower than that of the 5 th day and the 15 th day respectively. The field application veri‐ fies that the deformation of roadway roof and two sides under the optimized support scheme is reduced by 20.8% and 17.3% respectively compared with the original scheme,and the stability of roadway is effective‐ ly controlled. The research results can provide theoretical basis and technical guidance for deep soft rock roadway support design and ground pressure disaster prevention and control.

Key words: deep mining, soft rock roadway, ground pressure monitoring, numerical simulation