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李汉璞, 张百胜, 郭俊庆, 杨依卓, 崔俊彪. 两次采动影响下小煤柱巷道切顶卸压围岩控制技术[J]. 矿业安全与环保. DOI: 10.19835/j.issn.1008-4495.20221100
引用本文: 李汉璞, 张百胜, 郭俊庆, 杨依卓, 崔俊彪. 两次采动影响下小煤柱巷道切顶卸压围岩控制技术[J]. 矿业安全与环保. DOI: 10.19835/j.issn.1008-4495.20221100
LI Hanpu, ZHANG Baisheng, GUO Junqing, YANG Yizhuo, CUI Junbiao. Surrounding rock control technology of roof cutting for pressure relief in small coal pillar roadway under secondary mining[J]. Mining Safety & Environmental Protection. DOI: 10.19835/j.issn.1008-4495.20221100
Citation: LI Hanpu, ZHANG Baisheng, GUO Junqing, YANG Yizhuo, CUI Junbiao. Surrounding rock control technology of roof cutting for pressure relief in small coal pillar roadway under secondary mining[J]. Mining Safety & Environmental Protection. DOI: 10.19835/j.issn.1008-4495.20221100

两次采动影响下小煤柱巷道切顶卸压围岩控制技术

Surrounding rock control technology of roof cutting for pressure relief in small coal pillar roadway under secondary mining

  • 摘要: 为解决多次采动影响下留小煤柱巷道矿压显现剧烈、围岩变形量大的问题,提出了“切顶卸压+顶、帮锚索补强”联合控制技术。以贾家沟煤矿10115运输巷为工程背景,分析了切顶卸压位置、高度与巷道围岩垂直应力分布的关系,给出切顶卸压关键参数,并研究了留小煤柱巷道在切顶卸压后受两次采动影响下的矿压显现规律。结果表明:切顶卸压后,煤柱上的应力峰值随切顶深度的增加呈指数降低;10115运输巷在邻近工作面一次采动过程中巷道围岩变形规律依次呈现为无变形、缓慢变形、快速变形和围岩稳定,本工作面二次采动过程中巷道变形依次呈现出缓慢变形和显著变形的规律;巷道围岩在受二次采动影响时变形更加剧烈,巷道变形量为一次采动时的3.0~7.5倍。

     

    Abstract: In order to solve the problems of severe rock pressure and large deformation of surrounding rock in the roadway with small coal pillar under the influence of multiple mining,a technology combined cutting roof for pressure relief with top and side cable reinforcement was proposed. Taking the 10115 headentry of Jiajiagou Coal Mine as the research object, the relationship between the location and height of cutting roof for pressure relief and the vertical stress distribution of the surrounding rock of the roadway was analyzed,and the key parameters of cutting roof for pressure relief were given. The strata behaviors of the roadway with small coal pillar was studied under the influence of two mining movements after cutting roof for pressure relief. The results show that the peak stress of the coal pillar decreases exponentially with the increase of the roof cutting depth. In the adjacent working face mining process of 10115 headentry, also called the primary mining, roadway surrounding rock deformation changes from no deformation,slow deformation,rapid deformation to stability in turn. In the own working face mining process of 10115 headentry, called the second mining, the roadway deformation changes from slow deformation to significant deformation. The deformation of the roadway surrounding rock in the secondary mining is much larger than that in the primary mining,about from 3. 0 to 7. 5 times.

     

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