黄陵矿区双龙煤矿直罗组下段含水层水文地质特征及水害防治技术

Hydrogeological characteristics and water hazard prevention and control techniques of the lower segment aquifer of Zhiluo Formation in Shuanglong Coal Mine of Huangling Mining Area

  • 摘要:
    目的 针对以往双龙煤矿直罗组含水层研究存在勘探数据精细化不足、水害影响因素分析不全面、防治对策缺乏针对性的问题,为给矿井2号煤层安全开采提供精准水害防控依据,开展该含水层水文地质特征及防治对策专项研究。
    方法 布设CG5、CG6水文长观孔,采用岩心钻探、物探测井、抽水试验等方法,耦合经验公式与实测裂采比法预测导水裂隙带高度,从空间分布、富水性等多维度剖析含水层特征,分析水害影响因素。
    结果 明确直罗组下段为全区发育的承压水含水层,平均厚59.55 m、富水性弱,CG5、CG6渗透系数分别为0.002493 m/d、0.0108 m/d,水化学类型均为HCO3−Na型;2号煤层导水裂隙带最大高度36.99 m,未突破延安组顶部,水害威胁仅集中在天窗附近,划分出两类水害威胁分区。
    结论 构建“综合探查−工程防控−动态监测”全生命周期水害防治体系,可实现直罗组下段含水层水害的精准防控,为矿井安全生产提供保障。

     

    Abstract: In view of the previous issues in the research on the Zhiluo Formation aquifer in Shuanglong Coal Mine, such as insufficiently detailed exploration data, incomplete analysis of water hazard influential factors, and lack of targeted prevention and control measures, a special study on the hydrogeological characteristics and prevention and control measures of this aquifer is conducted to provide a precise basis for water hazard prevention and control during the mining of the NO.2 coal seam in the mine. CG5 and CG6 hydrological long-term observation holes were established, and methods such as core drilling, geophysical logging, and pumping tests were employed. The height of the water-conducting fracture zone was predicted by coupling empirical formulas with the measured fracture-extraction ratio method. The characteristics of the aquifer were analyzed from multiple dimensions, including spatial distribution and water-rich property, and the influential factors of water disasters were analyzed. It is confirmed that the lower segment of the Zhiluo Formation is a confined aquifer developed throughout the entire area, with an average thickness of 59.55 m and low water-rich property. The permeability coefficients of CG5 and CG6 are 0.002493 m/d and 0.0108 m/d, respectively, and both have a hydrochemical type of HCO3-Na. The maximum height of the water-conducting fracture zone in NO.2 coal seam is 36.99 m, which has not breached the top of the Yan'an Formation. The water hazard threat is mainly concentrated near the skylight, and two types of water hazard threat zones have been identified. By establishing a comprehensive lifecycle water hazard prevention and control system encompassing "comprehensive exploration, engineering prevention and control, and dynamic monitoring", precise prevention and control of water hazards in the lower segment of the Zhiluo Formation aquifer can be achieved, ensuring safe production in coal mines.

     

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