煤炭工程 ›› 2026, Vol. 58 ›› Issue (4): 145-154.doi: 10.11799/ce202604018

• 研究探讨 • 上一篇    下一篇

多煤层重复采动围岩导水裂隙演化规律及监测预警方法

谢明涛,李 振,范钢伟,金 浩,任闯难,董润泽,范张磊   

  1. 1. 内蒙古双欣矿业有限公司,内蒙古 鄂尔多斯 017000

    2. 兖矿能源集团股份有限公司山东煤炭科技研究院分公司,山东 济南 250117

    3. 中国矿业大学 矿业工程学院,江苏 徐州 221116

  • 收稿日期:2025-05-08 修回日期:2025-07-29 出版日期:2026-04-10 发布日期:2026-05-12
  • 通讯作者: 任闯难 E-mail:chuangnanrcn@163.com

Evolution law and monitoring-warning method of water-conducting fractures in surrounding rock under repeated multi-seam mining #br#

  • Received:2025-05-08 Revised:2025-07-29 Online:2026-04-10 Published:2026-05-12

摘要:

为解决多煤层开采围岩破坏及富水特征不明的工程难题,结合双欣矿业杨家村煤矿多煤层开采背景,综合采用数值计算、理论分析、现场测试等研究手段,建立了多煤层开采FLAC3D数值计算模型,探究了多煤层开采围岩导水裂隙非线性演化规律,明确了含水岩石“力-电” 信号响应关系,构建了“力-电”耦合监测预警模型,并进行现场实测应用。结果表明:多煤层开采过程的覆岩承载结构演化呈现高位传递特征,重复采动叠加破坏作用下导水裂隙呈现出非线性扩张特征。基于光纤光栅和直流电法耦合的采动岩层破坏及富水特征综合监测预警方法可兼顾围岩破坏范围确定和顶底板富水特征识别,有效预警工作面回采过程中的采动水害风险。35107采空区顶板破坏带高度为18m,与4-1煤采空区底板破坏带连通,24109 采空区存在老空水和顶板砂岩水共2处富水异常区域。考虑到35107工作面回采过程中涌水量整体较(0.2~1.5 m3/h),推断其顶部砂质泥岩顶板仍具有阻水性能。

关键词:

多煤层开采, 富水围岩, 导水裂隙, -电耦合, 监测预警

Abstract:

To address the engineering challenges of unclear surrounding rock failure and water-rich characteristics in multi-seam mining, this study, based on the multi-seam mining background of Yangjiacun Coal Mine at Shuangxin Mining, comprehensively employed numerical simulation, theoretical analysis, and field testing. A FLAC3D numerical model for multi-seam mining was established to investigate the nonlinear evolution law of water-conducting fractures in surrounding rock during multi-seam mining. The "mechanical-electrical" response relationship of water-bearing rocks was clarified, and a coupled "mechanical-electrical" monitoring and early warning model was constructed and applied in field measurements. The results indicate that the overburden load-bearing structure evolution during multi-seam mining exhibits high-level transfer characteristics, and under the superimposed damage effects of repeated mining, water-conducting fractures demonstrate nonlinear expansion characteristics. The integrated monitoring and early warning method, combining fiber Bragg grating and direct current resistivity, can simultaneously determine the extent of surrounding rock failure and identify water-rich features in the roof and floor, effectively warning of water hazards during mining. The failure zone height of the roof in the 351-upper 07 goaf was 18 m, connecting with the floor failure zone of the 4-1 coal seam goaf. Two water-rich anomaly areas-old goaf water and roof sandstone water-were identified in the 24109 goaf. Given the overall small water inflow (0.2~1.5 m3/h) during the mining of the 351-upper 07 working face, it was inferred that the overlying sandy mudstone roof still retains its water-resisting properties. The research findings provide theoretical and technical support for ensuring production safety in multi-seam mining faces at Shuangxin Mining and similar geological mining areas.

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