孤岛工作面沿空掘巷窄煤柱承载特征研究

    Study on bearing characteristics of narrow coal pillar in goaf excavation at Gudao face

    • 摘要: 孤岛工作面复杂的支承压力分布状态致使沿空巷道的围岩稳定性受到了极大影响。为探究孤岛工作面沿空掘巷窄煤柱承载特征,采用理论分析方法探究了煤柱塑性区宽度与多种因素相关性,运用数值模拟方法分析了支护参数对巷道围岩稳定性的影响。研究表明:随着侧压系数的增加,塑性区宽度近似线性增加;而随着支护强度的增加,塑性区宽度则近似线性减小。凝聚力和摩擦角的增加均会导致塑性区宽度的减小,但减小的幅度逐渐变小。增加锚杆长度和预紧力可以扩大压动范围,有效控制巷道围岩变形;而间排距的调整需要在保证支护强度的前提下,选择适当的宽度以提高施工效率和经济性。通过工业实验,采用合理的煤柱宽度和支护结构后,巷道围岩变形趋于稳定,确保了巷道的安全与正常使用,验证了支护方案的有效性。

       

      Abstract: The complex abutment pressure distribution of isolated island face greatly affects the surrounding rock stability of gob roadway. In order to explore the bearing characteristics of narrow coal pillar in gob excavation, the correlation between the plastic zone width of coal pillar and various factors is investigated by theoretical analysis method. The influence of supporting parameters on the stability of roadway surrounding rock is analyzed by numerical simulation method. The results show that the width of the plastic zone increases approximately linearly with the increase of the lateral pressure coefficient. With the increase of support strength, the width of plastic zone decreases approximately linearly. The increase of cohesion and friction Angle will lead to the decrease of the width of the plastic zone, but the amplitude of the decrease is gradually smaller. Increasing the length of bolt and the preload can enlarge the compression range and effectively control the deformation of roadway surrounding rock. In order to improve the construction efficiency and economy, the proper width should be selected to adjust the spacing of the interrow on the premise of ensuring the support strength. Through industrial experiments, the deformation of roadway surrounding rock tends to be stable after adopting reasonable width of coal pillar and supporting structure, which ensures the safety and normal use of roadway, and verifies the effectiveness of supporting scheme.

       

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