煤炭工程 ›› 2026, Vol. 58 ›› Issue (5): 134-140.doi: 10.11799/ce202605017

• 研究探讨 • 上一篇    下一篇

厚硬顶板强冲击工作面井下定向长钻孔区域压裂降载防冲技术研究

马宏源,杜涛涛,焦 彪,冯美华,卢振龙,史星星,马文涛   

  1. 1. 中煤科工开采研究院有限公司,北京 100013

    2. 陕西彬长胡家河矿业有限公司,陕西,咸阳 712000

  • 收稿日期:2025-05-30 修回日期:2025-07-30 出版日期:2026-05-15 发布日期:2026-05-27
  • 通讯作者: 马宏源 E-mail:mhy2021521@163.com

Load reduction and rockburst prevention technology by directional long borehole regional fracturing in a strong rockburst working face with thick hard roof

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  • Received:2025-05-30 Revised:2025-07-30 Online:2026-05-15 Published:2026-05-27
  • Contact: 马 宏源 E-mail:mhy2021521@163.com

摘要:

针对厚硬顶板易诱发冲击地压问题,以胡家河矿厚硬顶板强冲击工作面为工程背景,综合采用理论分析、现场监测等研究方法,揭示了厚硬顶板诱冲机理,建立了厚硬顶板冲击启动的判据式,提出了井下定向长钻孔分段区域水力压裂技术,对比分析了压裂区域与未压裂区域微震时空响应变化规律,验证了区域压裂降载防冲效果。结果表明:工作面上覆厚硬顶板形成的“F型”悬顶结构作为动、静载荷的供给源头,为诱发冲击启动提供了路径;所提出的井下定向长钻孔分段区域水力压裂技术可弱化厚硬顶板,使其丧失诱发冲击启动的载荷条件,阻断冲击启动路径;压裂后微震事件的能量释放形式由“高能低频”转变为“高频低能”,未压裂区域以102~103J的微震事件为主,占比约为60.3%,压裂区域以能量小于102J的微震事件为主,占比约为46.2%;压裂区域内微震日平均能量与每米释放能量均处于较低水平且变化稳定,采动集中影响范围远离工作面,降载防冲效果良好。

关键词:

冲击地压, 动静载荷, 诱冲机理, 区域压裂, 降载防冲, 微震响应

Abstract:

This article takes the strong impact working face of the thick and hard roof slab in Hujiahe Mine as the engineering background to address the problem of easily induced rockburst. By comprehensively using theoretical analysis, on-site monitoring and other research methods, the mechanism of thick and hard roof slab induced impact is revealed, and a criterion for the initiation of thick and hard roof slab impact is established. The downhole directional long drilling segmented hydraulic fracturing technology is proposed, and the spatiotemporal response changes of microseismic in the fractured area and non fractured area are compared and analyzed to verify the anti impact effect of regional fracturing load reduction. The results indicate that the "F-shaped" suspended roof structure formed by the thick hard roof covering the working face serves as the source of dynamic and static load supply, providing a path for inducing impact initiation; The fracturing of the thick and hard roof in the area has caused it to lose the load conditions that trigger impact initiation, hindering the path of impact initiation; The release of microseismic events has shifted from "high energy and low frequency" to "high frequency and low energy" forms. In the un fractured area, microseismic events with energies of 102-103J are the main ones, accounting for about 60.3%, while in the fractured area, microseismic events with energies less than 102J are the main ones, accounting for about 46.2%; The average energy and energy released per meter in the fracturing area are at a relatively low level and have stable changes. The concentrated impact of mining is far away from the working face and reduces the degree of mining influence. The regional fracturing has a good effect on load reduction and anti-collision.

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