孙晓明, 张勇, 吴修光, 桂兵, 卢昊, 杨鸣鹤. 坚硬顶板下综放工作面过空巷关键技术[J]. 煤矿安全, 2017, 48(4): 87-91.
    引用本文: 孙晓明, 张勇, 吴修光, 桂兵, 卢昊, 杨鸣鹤. 坚硬顶板下综放工作面过空巷关键技术[J]. 煤矿安全, 2017, 48(4): 87-91.
    SUN Xiaoming, ZHANG Yong, WU Xiuguang, GUI Bing, LU Hao, YANG Minghe. Key Technology of Fully Mechanized Workface Passing Through Abandoned Roadway with Hard Roo[J]. Safety in Coal Mines, 2017, 48(4): 87-91.
    Citation: SUN Xiaoming, ZHANG Yong, WU Xiuguang, GUI Bing, LU Hao, YANG Minghe. Key Technology of Fully Mechanized Workface Passing Through Abandoned Roadway with Hard Roo[J]. Safety in Coal Mines, 2017, 48(4): 87-91.

    坚硬顶板下综放工作面过空巷关键技术

    Key Technology of Fully Mechanized Workface Passing Through Abandoned Roadway with Hard Roo

    • 摘要: 针对工作面过空巷易出现矿压显现剧烈及空巷围岩大变形等问题,基于岩层运动中心建立的矿山压力理论为指导思想,以切顶短臂梁为理论基础,提出了综放工作面过空巷切顶卸压+恒阻大变形锚索支护技术。利用理论分析和数值模拟的方法分析了巷道围岩的稳定性、估算出周期来压步距及构建空巷理论力学模型,通过预裂爆破和等压小煤柱技术,使得超前支撑压力峰值处于空巷前方的煤壁深处,同时结合恒阻大变形锚索耦合支护技术控制巷道顶板的大变形。数值模拟结果显示,工作面周期来压步距约23.4 m,周期来压时超前支承压力位于煤壁前方12 m处。

       

      Abstract: It is prone to some problems such as strata pressure, surrounding rock deformation when workface passes through abandoned roadway. The guiding ideology is the theory of mining pressure, which is established by the center of rock strata movement. The theoretical basis of the research is the theory of cut-roof short arm beam. We propose the supporting technology of cutting roof pressure relief + constant resistance large deformation anchor cable when the comprehensive workface passes through abandoned roadway. By the means of theoretical analysis and numerical simulation, we analyzed the stability of roadway surrounding rock, estimated periodic weighting step distance and structured theoretical mechanics model of the construction of abandoned roadway. Through the pre-splitting blasting and isopiestic technique, the peak of advanced support stress shifted to the depth of the coal wall. The constant resistance large deformation anchor cable controlled the deformation of surrounding rock. Numerical simulation results show that the pressure step distance of workface is about 23.4 m and the advanced support stress is located at 12 m in front of the coal wall.

       

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