张迪. 基于CO2相变致裂的高瓦斯煤层增透消突快速掘巷技术研究[J]. 中国矿业, 2023, 32(4): 140-146. DOI: 10.12075/j.issn.1004-4051.2023.04.016
    引用本文: 张迪. 基于CO2相变致裂的高瓦斯煤层增透消突快速掘巷技术研究[J]. 中国矿业, 2023, 32(4): 140-146. DOI: 10.12075/j.issn.1004-4051.2023.04.016
    ZHANG Di. Research on rapid tunneling technology for enhancing permeability and eliminating outburst in high gas seam based on CO2phase change fracturing[J]. CHINA MINING MAGAZINE, 2023, 32(4): 140-146. DOI: 10.12075/j.issn.1004-4051.2023.04.016
    Citation: ZHANG Di. Research on rapid tunneling technology for enhancing permeability and eliminating outburst in high gas seam based on CO2phase change fracturing[J]. CHINA MINING MAGAZINE, 2023, 32(4): 140-146. DOI: 10.12075/j.issn.1004-4051.2023.04.016

    基于CO2相变致裂的高瓦斯煤层增透消突快速掘巷技术研究

    Research on rapid tunneling technology for enhancing permeability and eliminating outburst in high gas seam based on CO2phase change fracturing

    • 摘要:

      为了有效解决平山煤矿11009工作面轨道巷瓦斯突出、煤层透气性差、抽采效果达标时间长、掘巷速度慢等工程难题, 本文总结分析了巷道快速掘进的影响因素, 提出了液态CO2相变致裂增透消突-快速掘巷一体化技术, 并给出了其致裂增透技术原理, 优化了矿井抽采技术方案, 确定了液态CO2相变致裂增透技术参数及效果评价指标。研究结果表明:通过布置直径94 mm压裂杆20根/孔, 每根压裂杆内充1.5 kg的液态CO2, 并沿巷道掘进方向顺层布置, 煤层压裂后的钻孔瓦斯抽采浓度较长时间内维持在40%以上, 巷道回风流瓦斯浓度稳定在0.3%以内, 煤层瓦斯含量平均减少6.09 m3/t, 最高减幅达到58.83%, 每百米巷道掘进瓦斯治理时间可减小33 d, 瓦斯抽采效果与巷道掘进速度显著提高, 可有效解决该巷道瓦斯抽采效果差、巷道掘进速度慢的问题。

       

      Abstract:

      In order to effectively solve engineering problems of gas outburst, poor permeability of coal seam, unqualified extraction effect and slow speed of rapid roadway excavation in 11009 working face of Pingshan Coal Mine, influencing factors of rapid roadway excavation are summarized and analyzed, and cracking anti-reflection and rapid roadway excavation technology by liquid CO2phase change is proposed.The principle of cracking and anti-reflection technology is presented, the extraction technology scheme is optimized, and technical parameters and effect evaluation indexes of cracking anti-reflection technology by liquid CO2phase change are determined.The industrial test results show that by arranging 20 fracturing rods with a diameter of 94 mm, each of which is filled with 1.5 kg of liquid CO2, and is arranged along the roadway heading direction along the seam, the gas drainage concentration of the borehole after the coal seam fracturing is maintained above 40% for a long time, the gas concentration of the roadway return air flow is stabilized within 0.3%, the coal seam gas content is reduced by 6.09 m3/t on average, the maximum reduction is 58.83%, and the gas treatment time per hundred meters of roadway heading can be reduced by 33 days.The gas drainage effect and roadway driving speed are significantly improved, effectively solving the engineering problems of poor gas drainage effect and slow roadway driving speed.

       

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