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山脚树煤矿强采动巷道围岩加固关键技术研究

Study on key technology of surrounding rock reinforcement in strong mining roadway of Shanjiaoshu Coal Mine

  • 摘要: 为解决强采动巷道围岩变形破坏、难以维护的问题,以山脚树煤矿1200运输平巷为研究对象,采用数值模拟、钻孔窥视和现场工业性试验等研究方法,分析了强采动巷道围岩内部裂隙发育特征、巷道围岩塑性区分布与演化特征、巷道表面位移的变化情况,并结合现场实际条件提出了“二次强力锚注”支护方案。研究结果表明,受工作面多次采动影响,巷道围岩裂隙扩展,形成了较大的塑性区,范围在3.00 m左右;当工作面回采至巷道正上方时,采动应力将加剧巷道围岩破坏,导致顶板、左帮及右帮的变形量急剧增大。现场试验表明,采用该巷道支护优化方案后,巷道平均宽度为5.07 m,与未优化段相比,收缩了2.5%;顶底板平均距离为3.40 m,与未优化段相比,收缩了3%。该支护方案能够有效控制巷道变形。

     

    Abstract: To solve the problem of deformation, damage and difficult maintenance of roadway surrounding rock under the strong subsidence, the 1200 transportation roadway of Shanjiaoshu Coal Mine was take as the research object. By using the research methods of numerical simulation, drilling peep and on-site industrial test, the development characteristics of surrounding rock fissures, the distribution and evolution characteristics of surrounding rock plastic zone, and the variation law of roadway surface displacement for strong subsidence roadway were studied. On this basis, combined with the actual on-site situation, the control technical scheme of "secondary strong bolt injection" was put forward. The results show that the cracks in the surrounding rock of the roadway continue to expand and form a large plastic zone with a range of about 3.00 m after being affected by multiple subsidence influence of the working face. When the coal winning in working face is pushed directly above the roadway, the mining-induced stress will aggravate the damage of roadway surrounding rock, resulting in a sharp increase in the deformation amount of roof, left side and right side. The on-site test shows that after adopting the optimization scheme of roadway support, the average width of the roadway is 5.07 m, which shrinks by 2.5% compared with the origin support, and the average distance of the roof and floor is 3.40 m, which shrinks by 3% compared with the origin support, which indicates the scheme can effectively control the roadway deformation.

     

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