杨文丰, 李小琴, 李文平, 王启庆. 厚硬火成岩下采动离层发育规律与判别方法[J]. 煤矿安全, 2017, 48(2): 200-203.
    引用本文: 杨文丰, 李小琴, 李文平, 王启庆. 厚硬火成岩下采动离层发育规律与判别方法[J]. 煤矿安全, 2017, 48(2): 200-203.
    YANG Wenfeng, LI Xiaoqin, LI Wenpin, WANG Qiqing. Development Laws and Discriminated Method of Separation Stratum Induced by Coal Mining Under Thick Hard Igneous Rock[J]. Safety in Coal Mines, 2017, 48(2): 200-203.
    Citation: YANG Wenfeng, LI Xiaoqin, LI Wenpin, WANG Qiqing. Development Laws and Discriminated Method of Separation Stratum Induced by Coal Mining Under Thick Hard Igneous Rock[J]. Safety in Coal Mines, 2017, 48(2): 200-203.

    厚硬火成岩下采动离层发育规律与判别方法

    Development Laws and Discriminated Method of Separation Stratum Induced by Coal Mining Under Thick Hard Igneous Rock

    • 摘要: 针对在厚硬火成岩顶板下的采煤工程实例,理论分析了离层空间形成的机理与条件,并对研究区首采面“空腔型”离层空间位置进行判别;采用数值方法和光纤监测技术对厚硬火成岩下离层空间的演化与覆岩变形特征进行了过程模拟和动态监测分析。研究表明:首采面顶板覆岩共发育5处“空腔型”离层;上覆硬岩运移过程可分为下部支撑、底部离层扩展、失稳运移、离层闭合4个阶段;光纤监测结果在离层位置拉应力值逐渐增大,当离层上覆岩层受自重应力而失稳时,离层由下位岩层逐渐向上位岩层发展,直至发育到上位火成岩为止,这与数值模拟、理论判别结果相一致。

       

      Abstract: For the project case of mining under thick hard igneous roof, through theoretical analysis of the formation mechanism and conditions of separated stratum space, we discriminate “cavity type” separation location of the first face in study area. The process simulation and dynamic monitoring analysis are adopted to simulate the characteristics of the evolution of separation stratum space and deformation of overburden strata through numerical method and optical fiber monitoring technology. Research shows that: a total of 5 roof rock at the first primary face can develop the “cavity type” separation stratum space. The movement of overburden hard strata can also be divided into four steps which are named lower support, extension of the bottom separated stratum space, instability movment and closure of separated stratum space. The optical fiber monitoring value of tensile stress in separated stratum location increases gradually. The separation stratum develops gradually from the lower strata to upper strata until the upper igneous rock when the overburden strata of separation stratum loses stability by its self-weight stress. The results are consistent with the numerical simulation and theoretical discrimination.

       

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