陈 洋, 王存文, 张丽丽, 李振武, 周法乐, 马善磊. 基于防冲的充填工作面区段煤柱合理宽度研究[J]. 煤矿安全, 2020, 51(11): 253-257,262.
    引用本文: 陈 洋, 王存文, 张丽丽, 李振武, 周法乐, 马善磊. 基于防冲的充填工作面区段煤柱合理宽度研究[J]. 煤矿安全, 2020, 51(11): 253-257,262.
    CHEN Yang, WANG Cunwen, ZHANG Lili, LI Zhenwu, ZHOU Fale, MA Shanlei. Study on Reasonable Width of Section Coal Pillar in Filling Face Based on Rock Burst Prevention[J]. Safety in Coal Mines, 2020, 51(11): 253-257,262.
    Citation: CHEN Yang, WANG Cunwen, ZHANG Lili, LI Zhenwu, ZHOU Fale, MA Shanlei. Study on Reasonable Width of Section Coal Pillar in Filling Face Based on Rock Burst Prevention[J]. Safety in Coal Mines, 2020, 51(11): 253-257,262.

    基于防冲的充填工作面区段煤柱合理宽度研究

    Study on Reasonable Width of Section Coal Pillar in Filling Face Based on Rock Burst Prevention

    • 摘要: 为了实现充填工作面回采期间的防冲安全,以山东运河煤矿充填回收遗留条带煤柱为工程背景,在分析相邻采空区侧向支承压力分布特征的基础上,建立充填工作面区段煤柱失稳的工程力学模型,研究了区段煤柱的应力分布特征和失稳准则,确定了区段煤柱的合理尺寸。结果表明:充填浆体和矸石力学作用机理的差异导致区段煤柱处于水平方向的不等压力学结构,当区段煤柱受到的水平挤压力大于顶底板施加的阻抗力时,区段煤柱具有发生失稳的危险,综合考虑防治冲击地压、保障充填开采可靠性及提高煤炭资源回收率等因素,确定区段煤柱合理宽度为5.1~8.8 m。

       

      Abstract: In order to ensure the safety of anti-rock burst during the stoping of filling face, take the residual strip coal pillar in filling face of Yunhe Coal Mine as the engineering background, based on the analysis of the distribution characteristics of lateral abatement pressure in adjacent goaf, an engineering mechanical model of coal pillar instability in the section coal pillar of filling face is established, the stress distribution characteristics and instability criterion of section coal pillar are studied, and the reasonable size of section coal pillar is determined. The results show that the difference in the mechanical mechanism of filling slurry and gangue leads to the unequal pressure structure of the section coal pillar in the horizontal direction; when the horizontal extrusion pressure of the section coal pillar is greater than the impedance force exerted by the roof and floor, the section coal pillar will be in danger of instability; the reasonable width of the section coal pillar was determined to be 5.1 m to 8.8 m by comprehensively considering the factors such as preventing rock burst, ensuring the reliability of filling mining and improving the recovery rate of coal resources.

       

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