煤炭工程 ›› 2026, Vol. 58 ›› Issue (8): 125-133.doi: 10.11799/ce202608016

• 研究探讨 • 上一篇    下一篇

大倾角煤层煤岩采动应力及覆岩力学行为研究

李先峰,杜兆文,靳贤鹏,吕健华,孙立虎,张林冲,刘 坤   

  1. 1. 山东能源新矿集团,山东 泰安 271200

    2. 山东科技大学 能源与矿业工程学院,山东 青岛 266590

  • 收稿日期:2025-12-08 修回日期:2026-03-07 出版日期:2026-08-15 发布日期:2026-08-31
  • 通讯作者: 杜兆文 E-mail:631069150@qq.com

Mining-induced stress and overburden mechanical behavior in a steeply inclined coal seam#br#

  • Received:2025-12-08 Revised:2026-03-07 Online:2026-08-15 Published:2026-08-31

摘要:

为分析大倾角特厚煤层煤岩采动响应,采用理论分析、数值模拟和相似模拟等方法研究了大倾角特厚煤层煤岩采动应力演化特征,获得了煤岩应力偏转损伤规律,阐明了大倾角特厚煤层覆岩分区行为。结果表明:大倾角特厚煤层上部煤岩应力差表征为拱形区,顶煤最大主应力峰值相对超前。大倾角煤岩最大主应力σ沿轴分力在工作面附近相对较小,该应力与轴角度沿走向表征为逐渐减小变化特征。最小主应力σ沿轴发生较大幅度偏转,该应力在x轴分力沿走向表征为先增后减变化趋势。随着主应力σ与裂隙长轴夹角增大,煤岩内应力呈先增后减变化趋势。大倾角特厚煤层上部顶板采动响应最为剧烈,采动应力呈激增趋势。中部顶板采动响应较稳定,下部岩层采动应力最弱。

关键词: 大倾角煤层, 主应力, 方向偏转, 内应力, 分区破断

Abstract:

In order to analyze the mining response of steeply dipping and extra-thick coal seam, the stress evolution characteristics of coal rock in steeply dipping and extra-thick coal seams were studied through theoretical analysis, numerical simulation and similar simulation. The stress deflection damage law of coal and rock was obtained, and the zoning fracture behavior of the overburden in steeply dipping and extra-thick coal seams was clarified. The results show that the upper coal rock is characterized by arched stress zone, and the maximum principal stress peak of top coal and overburden is relatively advanced. The principal stress 1 along the Y-axis component of the coal and rock in steeply dipping and extra-thick coal seam is relatively small near the working face, and the stress and the Z-axis angle are characterized by a gradual decrease along the strike. The minimum principal stress 3 deflects significantly along the Y-axis, and its X-axis component exhibits an increasing-then-decreasing trend along its strike. As the angle between principal stress 1 and the long axis of fracture increases, the stress inside coal rock increases first and then decreases. The mining response is most intense in the upper roof of the steeply dipping and extra-thick coal seam, with mining stress showing a surge trend. The mining response in the middle roof is relatively stable, the mining stress in the lower strata is the weakest. The above research provides a theoretical basis for the analysis of mining effect of steeply dipping and extra-thick coal seam, and has certain reference value for the stability control of surrounding rock of steeply dipping and extra-thick coal seam.

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