煤炭工程 ›› 2025, Vol. 57 ›› Issue (7): 45-52.doi: 0. 11799/ ce202507007

• 施工技术 • 上一篇    下一篇

沿空巷道覆岩运动作用下煤柱承载变形及留设宽度研究

韩跃勇,李国营,陈洋,等   

  1. 1. 山东能源集团有限公司,山东 济南 250101

    2. 山东科技科技大学 能源与矿业工程学院,山东 青岛 266590

    3. 山东新巨龙能源有限责任公司,山东 菏泽 274900

  • 收稿日期:2024-08-12 修回日期:2024-11-16 出版日期:2025-07-11 发布日期:2025-08-14
  • 通讯作者: 马兴印 E-mail:ma.xingyin@sdust.edu.cn

Study on the bearing deformation and width of coal pillar under the action of overburden movement in gob-side roadway

  • Received:2024-08-12 Revised:2024-11-16 Online:2025-07-11 Published:2025-08-14

摘要:

小煤柱沿空掘巷是控制冲击地压灾害的有效手段。通过建立沿空巷道临空侧覆岩结构运动力学模型,得到了巷道掘进后上覆关键块转动角度及煤柱支承力表达式,结合数值模拟,研究了煤柱宽度对上覆关键块转动角度及煤柱应力演化规律的影响。结果表明:随着煤柱宽度的增大,上覆关键块体转动角度逐渐减小、两者呈指数函数关系,煤柱支承力则呈指数函数增大趋势,开采帮应力峰值变化不明显、但峰值位置距开采帮煤壁的距离逐渐增大;随着煤层厚度的增大,上覆关键块体转动角度线性增大,煤柱支承力逐呈指数函数减小趋势。确定新巨龙煤矿6305工作面区段煤柱留设宽度为4.5m,回采过程中巷道围岩变形较小,微震事件多集中在煤柱区域,临空侧覆岩无大能量事件,煤柱留设宽度合理、有助于顶板能量缓慢释放。

关键词: 沿空掘巷 , 覆岩运动 , 煤柱承载力 , 煤柱宽度

Abstract:

Gob-side entry driving with small coal pillars is an effective means to control rock burst disasters. By establishing the motion mechanics model of the overlying rock structure on the free side of the gob-side roadway, the expressions of the rotation angle of the overlying key block and the support force of the coal pillar after the roadway excavation are obtained. Combined with the numerical simulation, the influence of the width of the coal pillar on the rotation angle of the overlying key block and the stress evolution law of the coal pillar is studied. The results show that with the increase of the width of the coal pillar, the rotation angle of the overlying key block decreases gradually, and the relationship between them is exponential function. The supporting force of the coal pillar increases exponentially, and the peak stress of the mining side does not change significantly, but the distance between the peak position and the coal wall of the mining side increases gradually. With the increase of the thickness of the coal seam, the rotation angle of the overlying key block increases linearly, and the supporting force of the coal pillar decreases exponentially. It is determined that the width of the coal pillar in the 6305 working face of Xinjulong Coal Mine is 4.5 m. The deformation of the surrounding rock of the roadway is small during the mining process. The microseismic events are mostly concentrated in the coal pillar area, and there is no large energy event in the overlying rock on the free side. The width of the coal pillar is reasonable and contributes to the slow release of roof energy.

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