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现代矿业 ›› 2026, Vol. 42 ›› Issue (08): 21-25,32.

• 矿山控制爆破技术专栏 • 上一篇    下一篇

急倾斜特厚煤层综放开采顶煤预裂技术研究

杜运夯 鲁子冬 蒋明府   

  1. 云南能源职业技术学院资源与环境工程学院
  • 出版日期:2026-08-25 发布日期:2026-08-20

Research on Pre-splitting Technology of Top Coal in Fully Mechanized Caving Mining of Steeply Inclined and Extra Thick Coal Seam

DU Yunhang LU Zidong JIANG Mingfu   

  1. School of Resources and Environmental Engineering,Yunnan Vocational Institute of Energy Technology
  • Online:2026-08-25 Published:2026-08-20

摘要: 为改善新疆乌东煤矿北采区急倾斜特厚煤层坚硬顶煤冒落不充分及资源回收率偏 低的问题,开展注水-爆破耦合致裂顶煤预裂技术研究。依据煤层赋存与工作面空间条件,采用理 论计算、参数设计、现场试验和多源监测相结合的方法,确定注水压力、注水量、封孔长度、炮孔角 度及装药参数,形成扇形分组错距布孔和孔内正向连续装药方案;利用 KJ21矿压监测系统、锚杆受 力传感器、钻孔应力传感器及瞬变电磁探测,对措施实施前后顶煤应力、电性特征和放煤效果进行 对比评价。结果表明:注水压力为 10 MPa 及单孔注水量为 39.09 t时,煤体浸润软化效果较好;采用 直径 113 mm 炮孔、4 m 孔间距和 2 m 错距布孔后,可在顶煤 20 m 纵深范围内形成相互搭接的连续 损伤带。耦合预裂后,锚杆平均受力由 11.5 kN 降至 6.6 kN,降幅为 42.6%;钻孔平均围岩应力由 5.73 MPa 降至 4.89 MPa,降幅为 14.7%。预裂区最小视电阻率为 5~15 Ω·m,较未爆破区降低 62.5%~87.5%,低阻异常范围与炮孔作用区具有良好对应关系。研究表明,注水软化与爆破致裂可 协同促进顶煤应力释放和裂隙贯通,为类似急倾斜特厚煤层坚硬顶煤高效预裂与安全回采提供技 术支撑。

关键词: 急倾斜特厚煤层, 顶煤预裂, 综放开采, 注水-爆破耦合致裂

Abstract: In order to improve the problem of insufficient caving and low resource recovery rate of hard top coal in steeply inclined and extra-thick coal seam in the northern mining area of Wudong Coal Mine in Xinjiang,the pre-splitting technology of water injection-blasting coupling fracturing top coal is studied. According to the coal seam occurrence and working face space conditions,the theoretical calcula⁃ tion,parameter design,field test and multi-source monitoring are combined to determine the water injec⁃ tion pressure,water injection volume,hole sealing length,hole angle and charge parameters,and form the fan-shaped grouping staggered hole arrangement and the forward continuous charge scheme in the hole. By using KJ21 mining pressure monitoring system,bolt force sensor,borehole stress sensor and transient electromagnetic detection,the top coal stress,electrical characteristics and caving effect before and after the implementation of the measures are compared and evaluated. The results show that when the water in⁃ jection pressure is 10 MPa and the water injection amount of single hole is 39.09 t,the effect of coal infil⁃ tration and softening is better .After using 113 mm diameter blastholes,4 m hole spacing and 2 m staggered spacing,a continuous overlapping damage zone can be formed in the depth range of 20 m of top coal. After the coupling pre-splitting,the average stress of the bolt decreases from 11.5 kN to 6.6 kN,with a decrease of 42.6%. The average surrounding rock stress of the borehole decreased from 5.73 MPa to 4.89 MPa,with a decrease of 14.7%. The minimum apparent resistivity of the pre-splitting zone is 5~15 Ω · m,which is 62.5%~7.5% lower than that of the non-blasting zone. The low-resistance anomaly range has a good corre⁃spondence with the borehole action zone. The research shows that water injection softening and blasting fracturing can synergistically promote the stress release and fracture penetration of top coal,which pro⁃ vides technical support for efficient pre-splitting and safe mining of hard top coal in similar steeply in⁃ clined and extra-thick coal seams.

Key words: steeply inclined and extra-thick coal seam, pre-splitting of top coal, fully mechanized caving mining, water injection-blasting coupling fracturing