煤炭工程 ›› 2026, Vol. 58 ›› Issue (7): 97-105.doi: 10.11799/ce202607013

• 生产技术 • 上一篇    下一篇

冲击地压煤层超高压水射流割缝卸压技术研究

黄振飞,张永将   

  1. 1. 中煤科工集团重庆研究院有限公司,重庆 400037

    2. 煤矿灾害防控全国重点实验室,重庆 400037

  • 收稿日期:2025-11-05 修回日期:2026-03-06 出版日期:2026-07-15 发布日期:2026-08-03
  • 通讯作者: 黄振飞 E-mail:ggfantasy@126.com

Research On Ultra-High Pressure Water Jet Slotting and Pressure Relief Technolo-gy For Rockburst Coal Seam

  • Received:2025-11-05 Revised:2026-03-06 Online:2026-07-15 Published:2026-08-03

摘要:

冲击地压灾害严重影响煤矿安全高效生产,基于超高压水射流切割煤层卸压原理,提出了冲击地压煤层射流割缝防冲技术。首先分析了切割缝槽两侧的应力波强度,揭示了水射流在煤层内部切割缝槽的动载阻隔作用,切槽能够阻断煤岩层内动载传播路径,应力波透射进入切槽内部后波强大幅降低,从而降低冲击载荷对采掘空间的破坏;研究了割缝煤体沉降与支承力的关系,随着超高压水射流切割煤体并破坏其完整性,割缝煤体承压能力降低,从而改善煤层应力环境,实现割缝煤层的卸压减荷;分析了割缝塑性区宽度与冲击地压启动条件间关系,临近采掘空间割缝能延展巷道围岩塑性区宽度,水射流割缝对煤体具有增加冲击屏障作用。然后对采煤工作面及区段煤柱割缝区域煤体应力分布状态进行数值模拟分析,得出高压射流在煤层内部切割形成的切槽能有效缓解割缝区域内的应力集中状态,使高应力区向深部煤体转移。从应力卸压角度获得了煤层割缝合理化工艺参数,合理的割缝钻孔深度为20m、割缝钻孔间距3m。通过在胡家河煤矿综采放顶煤工作面进行超高压水射流割缝卸压防冲技术现场应用,100m回采里程范围内平均事件能量下降18%、单位进尺微震能37%、工作面地音趋势法评估需采取措施次数降低56%,表明超高压水力割缝技术能有效降低采掘工作面冲击地压发生危险,为煤矿冲击地压灾害治理提供了更多的技术手段。

Abstract:

The rockburst seriously affects the safety and production of coal mines. Based on the principle of ultra-high pressure water jet slotting coal seam pressure relief, the rockburst coal seam water jet slotting anti-rockburst technology is proposed. Firstly, the stress wave intensity on both sides of the slotting groove was analyzed, revealing the dynamic load blocking effect of water jet on the slotting groove inside the coal seam. The slotting groove can block the propagation path of dynamic load inside the coal layer, and the stress wave intensity is greatly reduced after entering the slotting groove, thereby reducing the damage of impact load to the mining space; the relationship between the settlement and supporting force of cut seam coal was studied. As the ultra-high pressure water jet cuts the coal and destroys its integrity, the pressure bearing capacity of cut seam coal decreases, thereby improving the stress environment of the coal seam and achieving unloading and load reduction of cut seam coal; The relationship between the width of the plastic zone of the slotting seam and the starting conditions of the impact ground pressure was analyzed. The slotting seam near the mining space can extend the width of the plastic zone of the surrounding rock of the roadway, and the water jet slotting seam has an increasing impact barrier effect on the coal body. Then, numerical simulation analysis was conducted on the stress distribution of the coal body in the coal seam slotting area of the coal mining face and section. It was found that the slotting groove formed by high-pressure jet slotting inside the coal seam can effectively alleviate the stress concentration state in the seam slotting area, and transfer the high stress area to the deep coal body. The rational process parameters for coal seam slotting were obtained from the perspective of stress relief, with a reasonable slotting drilling depth of 20m and a slotting drilling spacing of 3m. Through the on-site application of ultra-high pressure water jet slotting pressure relief and anti-rockburst technology in the fully mechanized top coal caving working face of Hujiahe Coal Mine, the average event energy decreased by 18% within a 100m mining mileage range, the microseismic energy per unit footage decreased by 37%, and the number of measures required for the evaluation of the working face ground sound trend method decreased by 56%. This indicates that ultra-high pressure hydraulic slotting technology can effectively reduce the risk of rock burst in mining working faces and provide more technical means for the management of rock burst disasters in coal mines.

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