煤层关键层压裂-造穴立体卸压增透技术及应用

Key Layer Fracturing - Cavity Forming and 3D Pressure Relief Permeability Enhancement Technology and Its Application in Coal Seams

  • 摘要: 为有效对关键层控制条件下的煤层进行卸压,提高煤层的渗透率和瓦斯抽采效率,以山西古城矿N3301煤层情况为工程背景,基于关键层理论和破断距理论,分析计算并判别出煤层上覆岩层的关键层。结合煤岩层的地质条件与地应力分布状态,通过FLAC3D模拟分析主、亚关键层联合卸压过程中岩体的应力与能量空间场变化。结果表明:通过关键层水力压裂及煤层内实施直径为400 mm大孔径造穴立体化瓦斯治理技术后,瓦斯抽采效果显著提升,能有效地对煤层进行卸压增透,对于普通钻孔,瓦斯抽采体积分数提高40%,瓦斯抽采纯量提升7.64倍;对于造穴钻孔,瓦斯抽采体积分数提高21%,瓦斯抽采纯量提升1.6倍。

     

    Abstract: In order to effectively conduct pressure relief on coal seams under key layer control conditions, and improve the penetration rate and gas extraction efficiency of coal seams, this article takes the situation of the N3301 coal seam in Gucheng Mine, Shanxi Province as the engineering background, and based on key layer theory and breaking distance theory, the key layers of the overlying rock strata of the coal seam are analyzed, calculated, and identified. Combined with the geological conditions and geostress distribution status of coal rock strata, the stress and energy spatial field changes of the rock mass during the joint pressure relief process of the main and sub key layers are analyzed by FLAC3D simulation. The results show that after key layer hydraulic fracturing and implementing 3D gas governance technology of large aperture cavity formation with a diameter of 400 mm in the coal seam, the gas extraction effect is significantly improved, and can effectively conduct pressure relief and permeability enhancement on the coal seam. For ordinary boreholes, the gas extraction volume fraction is improved by 40%, and the gas extraction pure quantity is improved by 7.64 times; For cavity forming boreholes, the gas extraction volume fraction is improved by 21%, and the gas extraction pure quantity is improved by 1.6 times.

     

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