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主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
大平煤矿综放开采顶板裂隙带发育规律研究
  • Title

    Research on the development law of roof fracture zone in fully mechanized top coal caving in Daping Colliery

  • 作者

    连跃东朱伟

  • Author

    Lian Yuedong Zhu Wei

  • 单位

    山西大平煤业有限公司中煤科工集团唐山研究院有限公司

  • Organization
    Shanxi Daping colliery Tangshan Research Institute,China Coal Technology & Engineering Group
  • 摘要

    为研究大平煤矿厚煤层综放开采导水裂缝带发育规律,采用地面钻探和实验室试验方式探测了综放工作面导水裂缝带发育高度以及裂隙带顶界面以上隔水岩层的物理力学特性,并将本矿井实测结果与相邻潞安矿区综放裂缝带实测数据进行了对比分析。结果表明,本矿井实测综放导水裂缝带发育高度为顶板以上105.53~112.62 m,裂采比为19.18~19.42,高度基本与采厚成正比,并获得了裂缝带高度计算经验公式。岩石力学试验结果表明,裂缝带顶界面上覆各岩层均有吸水软化现象,软化系数为0.29~0.85,对抑制裂缝发育扩展比较有利。研究成果可以用于指导本矿井河流下采煤和顶板水害防治。

  • Abstract
    In order to study the development rules of the water-conducting fracture zones in fully mechanized top coal caving in the Daping Coal Mine,ground drillin g and laboratory tests were used to detect the development height of the water-conducting fracture zones in the fully mechanized top coal caving face and the physical and mechanical characteristics of the impervious rock layers above the interface of the fracture zone.The measured results were compared with the measured data of t he fully mechanized caving fracture zone in the adjacent in Lu'an mining area.The results showed that the development height of the water-conducting fracture zone in t he fully mechanized sublevel caving was 105.53 ~ 112.62 m above the roof and the fracture-production ratio was 19.18 ~ 19.42.The height was basically proportional t 0 the mining thickness, and the empirical formula for calculating the crack zone height was obtained.Results of rock mechanics tests showed that all rock formations on t he top interface of the fracture zone had water absorption and softening,with a softening cofficient of 0.29 ~ 0.85,which was more favorable for inhibiting fracture dev elopment and expansion.Research results could be used to guide coal mining under the river and the roof water damage prevention in this mine.
  • 关键词

    厚煤层 综放开采 导水裂隙带 探测 水害

  • KeyWords

    thick coal seam; fully mechanized top coal caving; water flowing fractured zone; detection; water hazard;

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