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胡宝林, 陈赓, 张影, 姚晋宝. 中厚岩浆岩顶板煤层采动裂隙发育特征分析[J]. 煤炭科学技术, 2011, (7).
引用本文: 胡宝林, 陈赓, 张影, 姚晋宝. 中厚岩浆岩顶板煤层采动裂隙发育特征分析[J]. 煤炭科学技术, 2011, (7).
Analysis on Mining-induced Crack Development Features of Seam with Medium Thick Magmatic Rock Roof[J]. COAL SCIENCE AND TECHNOLOGY, 2011, (7).
Citation: Analysis on Mining-induced Crack Development Features of Seam with Medium Thick Magmatic Rock Roof[J]. COAL SCIENCE AND TECHNOLOGY, 2011, (7).

中厚岩浆岩顶板煤层采动裂隙发育特征分析

Analysis on Mining-induced Crack Development Features of Seam with Medium Thick Magmatic Rock Roof

  • 摘要: 通过对朱庄煤矿Ⅲ4414工作面上覆岩层的特征研究,利用FLAC模拟软件对中厚岩浆岩顶板在采动下的变行破坏规律进行了模拟。模拟结果表明:Ⅲ4414工作面采空区顶板冒落高度在6m左右,裂隙的高度最大发育到火成岩顶部,距煤层底板25~28 m。在此基础上布置的上隅角高位钻孔瓦斯抽采率与相邻工作面相比,提高了近2倍,改善了工作面的安全生产状况。

     

    Abstract: With the study on the overburden strata features above No. 4414 coal mining face in Zhuzhuang Mine, the FLAC simulation software was applied to the simulation of the deformation failure law of the medium thick magmatic rock roof under the mining activities. The simulation results showed that the roof falling height in the goaf of No.亚4414 coal mining face was about 6 m, the max height of the cracks was developed to the top of the igneous rock, which was 2528 m in distance to the seam floor.In comparison with the neighbour coal mining faces, the gas drainage rate with the high level boreholes drilled at the top corner would be increased by 2 tim es and could improve the safety production status of the coal mining face.

     

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