特厚煤层综放工作面压架机理及防控技术研究

Mechanism of support crushing and prevention-control technology in fully mechanized top-coal caving face in extra-thick coal seam

  • 摘要:
    目的 针对特厚煤层开采过程中压架事故频发的问题,
    方法 以黄陵矿区某矿5106特厚煤层综放工作面为研究对象,系统分析了压架机理并提出综合防控技术。
    结果 研究表明,压架事故主要由上覆巨型集中煤柱失稳、关键层破断能量传递、顶板稳定性劣化及支架−围岩耦合失效等多因素耦合引发。通过岩层结构分析和支架压力动态监测,揭示了煤柱动压与关键层破断对矿压显现的主导作用,并提出地面压裂解危、“三位一体”矿压监测预警、采放工艺优化等防控措施。
    结论 应用结果表明,防控措施实施后工作面周期来压强度降低41%,压架事故处理成本显著减少,推进效率提升4倍以上。

     

    Abstract: In response to the frequent occurrence of support crushing accidents during mining in extra-thick coal seams, this study takes the 5106 fully mechanized top-coal caving face of a mine in the Huangling mining area as the research object, systematically analyzes the support crushing mechanism, and proposes comprehensive prevention and control techniques. The research indicates that support crushing accidents are primarily triggered by the coupling of multiple factors, including instability of overlying giant concentrated coal pillars, energy transfer from key stratum fracturing, deterioration of roof stability, and coupling failure of the support-surrounding rock. Through structural analysis of rock strata and dynamic monitoring of support pressure, the dominant roles of dynamic pressure from coal pillars and key stratum breakage on strata behavior are revealed. Accordingly, prevention and control measures such as surface fracturing for distress relief, trinity mine-pressure monitoring and early warning, and optimization of mining and top-coal caving technology are proposed. Application results show that after implementing the prevention and control measures, the periodic weighting intensity of the working face was reduced by 41%, the cost of handling support crushing accidents was significantly decreased, and the advancing efficiency was improved by more than four times.

     

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