商晶志. 井下水力压裂技术在低阶煤层中的工程实践[J]. 煤矿安全, 2016, 47(6): 147-150.
    引用本文: 商晶志. 井下水力压裂技术在低阶煤层中的工程实践[J]. 煤矿安全, 2016, 47(6): 147-150.
    SHANG Jingzhi. Engineering Practice of Underground Hydraulic Fracturing Technology in Low-rank Coal Seam[J]. Safety in Coal Mines, 2016, 47(6): 147-150.
    Citation: SHANG Jingzhi. Engineering Practice of Underground Hydraulic Fracturing Technology in Low-rank Coal Seam[J]. Safety in Coal Mines, 2016, 47(6): 147-150.

    井下水力压裂技术在低阶煤层中的工程实践

    Engineering Practice of Underground Hydraulic Fracturing Technology in Low-rank Coal Seam

    • 摘要: 针对珲春矿区赋存的煤层具有低煤阶、透气性好和高瓦斯的特点,开展了水力压裂技术工业试验,对比分析了压裂区域内外高位钻孔瓦斯抽采浓度及本煤层预抽钻孔压裂前、后抽采参数、工作面瓦斯涌出量和降尘效果。试验结果表明:压裂区域内高位钻孔抽采瓦斯浓度较压裂区外平均提高2.65倍;压裂后本煤层预抽钻孔瓦斯抽采浓度较压裂前平均提高1.83倍,流量平均提高39倍;回采工作面的瓦斯涌出量由压裂区域外的23 m3/t降低到第1阶段压裂区域的9.82 m3/t和第2阶段压裂区域的7.51 m3/t;压裂影响半径达20~34 m,本煤层预抽钻孔间距也大大增加。

       

      Abstract: For the features of low-rank coal, good permeability and high gas in the coal seam of Hunchun Coal Mine, we carry out industrial tests of hydraulic fracturing,compare and analyze the gas extraction concentration inside and outside the high drilling fracturing area, extraction parameters before and after fracturing of mining-coal bed pre-drainage holes, gas emission at working face and dust fall effect. The results show that gas extraction concentration of high level borehole inside fracturing area averagely increased by 2.65 times than that outside fracturing zone; the gas extraction concentration of mining-bed pre-drainage borehole after fracturing averagely increased by 1.83 times, flow increased by 39 times averagely, than that before fracturing. The gas emission at working face reduced to 9.82 m3 / t of phase 1 fracturing area and 7.51 m3 / t of phase 2 fracturing area respectively from 23 m3 / t outside the fracturing area. Fracturing effect radius is 20 m to 34 m, the interval of mining-coal bed coal seam pre-drainage borehole also increased greatly.

       

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