仇海生. 高瓦斯矿井立井揭煤应力分布模拟及防突措施研究[J]. 煤矿安全, 2017, 48(5): 169-172.
    引用本文: 仇海生. 高瓦斯矿井立井揭煤应力分布模拟及防突措施研究[J]. 煤矿安全, 2017, 48(5): 169-172.
    QIU Haisheng. Vertical Shaft Uncovering Coal Stress Distribution Simulation of High Gas Mine and Outburst Prevention Measures Research[J]. Safety in Coal Mines, 2017, 48(5): 169-172.
    Citation: QIU Haisheng. Vertical Shaft Uncovering Coal Stress Distribution Simulation of High Gas Mine and Outburst Prevention Measures Research[J]. Safety in Coal Mines, 2017, 48(5): 169-172.

    高瓦斯矿井立井揭煤应力分布模拟及防突措施研究

    Vertical Shaft Uncovering Coal Stress Distribution Simulation of High Gas Mine and Outburst Prevention Measures Research

    • 摘要: 针对立井延伸揭穿高瓦斯15#煤层的安全隐患,分析了立井筒壁与掘进头附近应力分布特征,结合立井开挖的数值模拟分析了筒壁的应力集中区的高度范围H1x-z平面的横向影响范围L1和掘进头前方的应力集中区的高度范围H2x-z平面的横向影响范围L2的相应取值范围,针对上述的结论在现场实施了钻孔预排瓦斯与卸压,最终保证了立井成功揭穿了15#煤层。

       

      Abstract: For the safe hidden trouble of vertical shaft extension exposing 15# high gas coal seam, this paper analyzes the vertical shaft wall near head of working face and the stress distribution characteristics, combined with the numerical simulation of the vertical shaft excavation, the paper analyzes the height range H1 of the wall stress concentration area and transverse impact scope of the x-z plane L1 and height range H2 in front of heading face of stress concentration and the corresponding value range of L2 in transverse impact scope of x-z plane. According to the above conclusion, drilling gas pre-drainage and pressure relief is carried out at the scene to ensure the shaft to expose 15# coal seam successfully.

       

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