刘柄良, 王占宝. 大采高工作面煤壁片帮力学机制与深度研究[J]. 煤矿安全, 2018, 49(S1): 14-17.
    引用本文: 刘柄良, 王占宝. 大采高工作面煤壁片帮力学机制与深度研究[J]. 煤矿安全, 2018, 49(S1): 14-17.
    LIU Bingliang, WANG Zhanbao. Study on Rib Spalling Mechanism and Depth of Working face with Large Mining Height[J]. Safety in Coal Mines, 2018, 49(S1): 14-17.
    Citation: LIU Bingliang, WANG Zhanbao. Study on Rib Spalling Mechanism and Depth of Working face with Large Mining Height[J]. Safety in Coal Mines, 2018, 49(S1): 14-17.

    大采高工作面煤壁片帮力学机制与深度研究

    Study on Rib Spalling Mechanism and Depth of Working face with Large Mining Height

    • 摘要: 为了揭示大采高工作面煤壁片帮发生机理,确定片帮位置与深度,基于弹性力学、PFC2D数值模拟等方法,对神东矿区补连塔煤矿12511大采高综采工作面片帮机理进行研究;揭示了工作面煤壁渐进劣化特征,建立了工作面“薄板”力学模型与煤壁片帮深度经验计算公式,进而推导出煤壁变形的挠度方程,确定支架护帮结构控制煤壁片帮的技术。结果表明:工作面煤壁片帮失稳位置在采高的0.579倍处;最大煤壁片帮深度0.98~1.61 m;调整工作面支架顶梁前端结构,确定工作面支架的护帮结构平均支护强度应大于0.16 MPa。

       

      Abstract: In order to reveal the mechanism of rib spalling of working face with large mining height and determine the position and the depth of rib spalling. Based on elastic mechanics, PFC2D numerical simulation and other methods, this paper studies the mechanism of rib spalling of 12511 fully mechanized working face with large mining height in Bulianta Coal Mine of Shendong Mining Area, reveals the characteristics of gradual deterioration of coal wall in working face, establishes the mechanical model of the “thin plate” and calculating formula of rib spalling depth, and then deduces the deflection equation of coal wall deformation to determine the technology of support protection structure controlling rib spalling. The results indicate that instability point is located at 0.579 times of the mining height, the maximum depth of rib spalling is 0.98 m to 1.61 m; adjusting the front-end structure of the roof beam of the working face, the average support strength of the support coal wall protection structure of working face supports should be greater than 0.16 MPa.

       

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