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现代矿业 ›› 2026, Vol. 42 ›› Issue (07): 259-264.

• 安全·环保 • 上一篇    下一篇

近直立特厚煤层高压注水防冲减灾试验研究

付根宁1 李 博2   

  1. 1. 国家能源集团新疆能源化工有限公司;2. 北京科技大学资源与安全工程学院
  • 出版日期:2026-07-25 发布日期:2026-08-17

Experimental Study on High Pressure Water Injection on Anti-Impact and Disaster Reduction in Near Vertical Extra-thick Coal Seam

FU Genning1 LI Bo2   

  1. 1. Xinjiang Energy Chemical Co.,Ltd.,National Energy Group;2. School of Resources and Safety Engineering,University of Science and Technology Beijing
  • Online:2026-07-25 Published:2026-08-17

摘要: 以乌东煤矿 B3-6 煤层+425 m 水平工作面为工程背景,结合室内煤体含水率力学试 验、数值模拟与现场微震监测手段,系统开展煤层注水卸压防冲研究。结果表明:近直立煤层开采 后巷道上下方、工作面端部及采空区下方为主要应力集中区,未采取卸压措施时,巷道最大水平应 力峰值为 35 MPa,垂直应力峰值为 20 MPa,冲击风险较高;实施煤层注水后,煤体力学性能弱化,围 岩应力有效释放,垂直应力峰值降幅达 5 MPa,应力集中系数显著降低,且浅部集中应力向煤体深 部转移。现场监测显示,煤层注水可提升微震事件频次、降低震动能量,减少高能级震动事件,实 现煤岩体弹性能渐进缓释。研究证实,煤层注水可有效弱化近直立特厚煤层围岩应力集中、优化 能量释放规律,显著降低冲击地压风险,可为同类矿井冲击灾害防控提供参考。

关键词: 近直立特厚煤层, 煤层注水, 冲击地压, 数值模拟, 微震监测

Abstract: Taking the +425 m horizontal working face of B3-6 coal seam in Wudong Coal Mine as the engineering background,combined with indoor coal moisture content mechanics test,numerical simu⁃ lation and on-site microseismic monitoring methods,coal seam water injection on pressure relief and rock burst prevention is systematically studied. The results show that the main stress concentration areas are the upper and lower parts of the roadway,the end of the working face and the lower part of the goaf after the mining of the near-vertical coal seam. When the pressure relief measures are not taken,the maximum hori⁃ zontal stress peak of the roadway is 35 MPa,and the vertical stress peak is 20 MPa,and the impact risk is high. After the implementation of coal seam water injection,the mechanical properties of coal body are weakened,the stress of surrounding rock is effectively released,the peak value of vertical stress is re⁃ duced by 5 MPa,the stress concentration coefficient is significantly reduced,and the shallow concentrat⁃ ed stress is transferred to the deep part of coal body. Field monitoring shows that coal seam water injection can increase the frequency of microseismic events,reduce vibration energy,reduce high-level vibration events,and achieve progressive release of elastic energy of coal and rock mass. The study confirmed that the coal seam water injection can effectively weaken the stress concentration of the surrounding rock of the nearvertical extra-thick coal seam,optimize the energy release law,and significantly reduce the risk of rock burst,which can provide reference for the prevention and control of rock burst disasters in similar mines.

Key words: near vertical extra-thick coal seam, coal seam water injection, rock burst, numerical sim? ulation, microseismic monitoring