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低渗透性煤层CO2相变致裂增透规律及应用

Law and Application of Permeability Improvement in Low Permeability Coal Seam due to CO2 Phase Transition Cracking

  • 摘要: 针对轿子山煤矿M9煤层采掘过程中,煤层瓦斯含量高、压力大、抽采效率低、瓦斯治理周期长等问题,应用具有“增透”和“置换”双重效应的CO2相变致裂增透技术,提高煤层透气性和瓦斯抽采效率。在轿子山煤矿9807运输巷进行CO2相变致裂增透试验,重点考察不同致裂方式、不同布孔方式的致裂孔瓦斯抽采效果。结果表明:致裂孔抽采瓦斯纯流量是普通抽采孔的2.0~2.8倍,抽采瓦斯浓度提高1.7~2.4倍。在煤层赋存及钻孔条件相似的情况下,延时起爆(二次)致裂方式的钻孔有利于裂隙延展,增大裂隙范围;在致裂孔两边施工辅助孔时,为高压CO2气体提供了自由面,减小了其向周边传播阻力,能够增大致裂孔影响范围,从而提高瓦斯抽采效率。

     

    Abstract: In the process of M9 coal seam mining in Jiaozishan Coal Mine, the high gas content, high pressure, low extraction efficiency and long gas treatment cycle have been put forward, the permeability and gas extraction efficiency of coal seam can be improved by applying CO2 phase transition cracking technology with the dual effect of "increasing penetration" and "displacement". The CO2 phase transition cracking test was carried out in 9807 transport lane of Jiaozishan Coal Mine, and the effect of gas extraction with different cracking mode and different way of distribution hole was emphatically investigated. The results show that compared with the pure flow rate of gas extraction, the cracking hole is 2.0 times to 2.8 times higher than that of the normal one, the gas extraction concentration is increased by 1.7 times to 2.4 times. Under the similar conditions of coal seam occurrence and drilling conditions, the drilling of delayed (two) cracking mode is beneficial to crack extension and increase the crack range; when the auxiliary holes are constructed on both sides of the cracking hole, it provides a free surface for high pressure CO2 gas, reduces its propagation resistance to the periphery, and can increase the influence range of the cracking hole, thus improving gas extraction efficiency.

     

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