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液态CO2相变驱替煤层CH4钻孔压力脉动促抽效能中试研究

Pilot test on pressure pulsation and pumping efficiency of liquid CO2 phase change displacement for CH4 drilling in coal seams

  • 摘要: 煤层CH4对于制约煤矿安全生产、增加清洁能源补给和造成大气环境温室效应均具有重要影响,注液态CO2除了减小煤层瓦斯压力、降低煤与瓦斯突出事故发生风险以及减少CH4排放对大气环境影响的有力措施之外,同时也是实现煤层CH4抽采提质增效的有效途径。为考察液态CO2压注时,压注孔压力的脉动变化对煤层CH4抽采的强化效果,将压注后煤层中CO2有效影响半径和CH4抽采浓度、钻孔抽采混量以及钻孔CH4抽采纯量作为评价指标,以定量连续压注方式在陕西黄陵双龙煤矿开展了2.0、3.4、5.0 MPa不同压力工况下的顺层钻孔压注液态CO2相变驱替煤层CH4原位对比试验。结果表明,压注压力随时间均表现出“几字”型变化趋势,注液压力为3.4 MPa时钻孔压力出现脉动变化,压力脉动振幅和周期分别为0.7 MPa和10.7 min,该工况压注后CO2在煤层中有效影响半径达到25 m,与压注压力为5.0 MPa时的CO2影响半径一致,且高于压注压力为2.0 MPa时的CO2影响半径;此外,相较于压注压力2.0 MPa和5.0 MPa两工况,压注液态CO2钻孔压力脉动变化时的CH4抽采浓度、钻孔抽采混量和钻孔CH4抽采纯量等指标的效能分别提高了29.9%和7.2%、43.6%和27.3%、84.0%和36.3%;压注液态CO2相变脉动驱替煤层CH4对于充分发挥井下有限量液态CO2驱替促抽效能具有良好促进作用。

     

    Abstract: Methane in coal seams (CH4) significantly impacts coal mine safety, contributes to clean energy supply, and affects the greenhouse effect in the atmosphere. Injecting liquid CO2 is not only a powerful measure to reduce coal seam gas pressure, lower the risk of coal and gas outburst accidents, and minimize the impact of CH4 emissions on the atmospheric environment, but also an effective way to improve the quality and efficiency of coal seam CH4 extraction. To investigate the enhancement effect of the pulsation of the borehole pressure on coalbed CH4 extraction during liquid CO2 injection, CO2’s effective influence radius, CH4 extraction concentration, borehole extraction mixture, and pure CH4 extraction from boreholes were used as indicators. A series of in-situ comparative experiments were conducted at the Shuanglong Coal Mine in Huangling, Shaanxi, using continuous injection methods at pressures of 2.0 MPa, 3.4 MPa, and 5.0 MPa. Results showed that injection pressure exhibited a “∏-shaped” trend over time. At 3.4 MPa, borehole pressure fluctuated with an amplitude and period of 0.52 MPa and 10.7 minutes, respectively. The effective influence radius of CO2 in the coal seam reached 25 meters, consistent with the 5.0 MPa pressure case and higher than the 2.0 MPa case. Additionally, compared to pressures of 2.0 MPa and 5.0 MPa, CH4 extraction concentration, borehole extraction mixture, and pure CH4 extraction efficiency increased by 29.9% and 7.2%, 43.6% and 27.3%, and 84.0% and 36.3%, respectively, with CO2 injection. The phase change displacement of CO2 in the coal seam effectively promotes CH4 extraction efficiency.

     

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