保护层开采围岩应力演变及瓦斯高效抽采优化研究

    Study on the evolution of surrounding rock stress and optimization of efficient gas extraction in protective layer mining

    • 摘要: 针对煤层群双重保护层开采过程中被保护层瓦斯高效抽采问题,采用数值仿真手段揭示复合开采条件下围岩应力场分布特征及其动态演变机制并提出优化抽采孔位布设方案。研究表明,实施双重保护层开采可扩展受护层卸压区域范围并降低其应力水平。下保护层开采后,受护层倾斜方向卸压边界角分别为85.5°(上缘)与70.5°(下缘),走向卸压角为61.5°;上保护层开采使受护层倾斜上下边界卸压角调整为74.5°与77.5°。抽采孔瓦斯体积分数由原始状态的25%~35%显著提升至85%以上,单孔气体流量由初始的0.019~0.069 m3/min增至1.099~1.839 m3/min,甲烷纯量增幅较大。当采掘工作面推进距离超过150 m时,抽采参数呈现快速衰减趋势,表明卸压瓦斯抽采过程具有显著的空间异质性和时序动态性。

       

      Abstract: Aiming at the problem of efficient gas extraction from the protected layer in the process of double-protected layer mining of coal seam group, numerical simulation is used to reveal the distribution characteristics of the surrounding rock stress field and its dynamic evolution mechanism under the composite mining conditions, and to propose the optimization of the extraction holes layout scheme. The study shows that the implementation of double protective layer mining can extend the range of pressure relief area of the protected layer and reduce its stress level. After mining the lower protective layer, the pressure relief boundary angles in the inclined direction of the protected layer were 85.5° (upper edge) and 70.5° (lower edge), and the strike relief angle was 61.5°; the upper protective layer mining adjusted the upper and lower boundaries of the protected layer inclined pressure relief angles to 74.5° and 77.5°, respectively. The volume fraction of gas in the extraction holes increased significantly from 25%~35% in the original state to more than 85%, and the gas flow rate of a single hole increased from 0.019~0.069 m3/min to 1.099~1.839 m3/min, with a large increase in the pure amount of methane. The extraction parameters showed a rapid decay trend when the digging face advanced more than 150 m, indicating that the unpressurized gas extraction process has significant spatial heterogeneity and temporal dynamics.

       

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