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Pressure reduction mechanism and effect of working face passing through abandoned roadway by roof presplit

机译:通过屋顶防柱通过废弃巷道的压力减少机制及其作用

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Due to the existence of abandoned roadways in the thick coal seam, the ground pressure would increase greatly due to the roof advanced breaking when the working face passed through the affected area of abandoned roadways. In order to solve this problem, a solution for roof presplit in the abandoned roadway was proposed. Based on the mining and geological conditions of Huasheng Hufeng coal mine, the roof vertical stress and vertical displacement with different roof presplit distance were analyzed by using FLAC3D numerical software. The research results indicated that the roof vertical stress and vertical displacement could be reduced effectively by roof presplit. When the roof presplit distance was 15?m, the maximum vertical stress and the maximum vertical displacement were both minimum. The maximum vertical stress was reduced by 14.55% and the maximum vertical displacement was reduced by 37.51% after roof presplit. The reasonable roof presplit distance of the working face was determined to be about 15?m by combining theoretical and numerical analysis. The engineering application results indicated that the maximum working resistance of the hydraulic support was reduced by 35.86% after roof presplit, and the engineering effect was good. The research results can provide technical guidance and theoretical support for the same type mines.
机译:由于厚煤层中的废弃道路存在,由于屋顶通过废弃的道路的受影响地区的工作面积推进,地面压力会大大增加。为了解决这个问题,提出了一种废弃的道路上的屋顶支柱的解决方案。基于华盛虎凤煤矿的采矿和地质条件,采用FLAC3D数值软件分析了屋顶垂直应力和不同屋顶超岩距离的垂直位移。研究结果表明,屋顶盖板可以有效地减少车顶垂直应力和垂直位移。当屋顶超容距距离为15Ωm时,最大垂直应力和最大垂直位移都最小。最大垂直应力降低14.55%,在屋顶柱柱后,最大垂直位移减少了37.51%。通过组合理论和数值分析,确定工作面的合理屋顶超距离为约15Ωm。工程申请结果表明,屋顶盖板液压支架的最大工作电阻降低了35.86%,工程效果良好。研究结果可以为同一型矿山提供技术指导和理论支持。

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