董合祥, 段宏飞, 王亚军. 特厚煤层坚硬顶板临空煤巷强矿压显现机理及控制技术[J]. 煤矿安全, 2018, 49(9): 271-275.
    引用本文: 董合祥, 段宏飞, 王亚军. 特厚煤层坚硬顶板临空煤巷强矿压显现机理及控制技术[J]. 煤矿安全, 2018, 49(9): 271-275.
    DONG Hexiang, DUAN Hongfei, WANG Yajun. Mechanism and Control Technology of Strong Strata Behavior of Gob-side Entry in Extra Thick Coal Seam with Hard Roof[J]. Safety in Coal Mines, 2018, 49(9): 271-275.
    Citation: DONG Hexiang, DUAN Hongfei, WANG Yajun. Mechanism and Control Technology of Strong Strata Behavior of Gob-side Entry in Extra Thick Coal Seam with Hard Roof[J]. Safety in Coal Mines, 2018, 49(9): 271-275.

    特厚煤层坚硬顶板临空煤巷强矿压显现机理及控制技术

    Mechanism and Control Technology of Strong Strata Behavior of Gob-side Entry in Extra Thick Coal Seam with Hard Roof

    • 摘要: 针对大同矿区石炭系3-5号特厚煤层坚硬顶板综放工作面在留设38~43 m区段煤柱条件下,临空煤巷超前支护段仍出现严重变形、伴有动力冲击等强矿压显现问题;采用理论分析、现场实测与数值模拟相结合的方法,研究得到了临空煤巷超前支护段强矿压显现的机理。结果表明:两采空区高支承压力相互叠加和煤岩体本身的蠕变效应共同作用是导致临空煤巷超前支护段强矿压显现的根本原因;工作面上覆K3亚关键层的破断将导致采空区四周形成高支承压力区,该支承压力影响范围110~150 m;提出面周比的概念,随面周比增大,支承压力峰值强度和峰值位置呈线性增大,而支承压力影响范围基本不变。提出并实施了特厚煤层坚硬顶板留窄煤柱护巷技术,在塔山煤矿8204工作面5204巷现场试验取得了良好的效果,保证了工作面的正常生产。

       

      Abstract: For the serious deformation, dynamic impact and other problems in the advancing support section of coal roadway under the condition of retaining pillar of 38 m to 43 m in Carboniferous No.3-5 extremely thick coal seam of Datong Mining Area with hard roof, by combining theoretical analysis, field measurement and numerical simulation, we studied the mechanism of the occurrence of strong pressure in advance supporting section of coal roadway, the results show that the superposition of high support pressure in the two goaf areas and the creep effect of coal rock mass are the fundamental reasons for the occurrence of strong pressure in the leading supporting section of the coal roadway; the fracture of overlying K3 sub-critical layer of working surface will lead to the formation of high supporting pressure zone around the goaf and the influence range of support pressure is 110 m to 150 m; we proposed the concept of surface cycle ratio, and the peak strength and peak position of support pressure increase linearly with the increase of surface cycle ratio, while the influence range of support pressure is basically unchanged. We proposed and implemented the technology of roadway protection for narrow pillar with hard roof in ultra-thick coal seam. The field test of 5204 lane in 8204 working face of Tashan Coal Mine achieved good results and ensured the normal production of working face.

       

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