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LIU Ying-ke, LIU Chun, DING Jian-xun, JIA Heng-yi. Study and Application on Destressing and Elimination Outburst Technology in Large-diameter Hole[J]. Safety in Coal Mines, 2012, 43(2): 82-84.
Citation: LIU Ying-ke, LIU Chun, DING Jian-xun, JIA Heng-yi. Study and Application on Destressing and Elimination Outburst Technology in Large-diameter Hole[J]. Safety in Coal Mines, 2012, 43(2): 82-84.

Study and Application on Destressing and Elimination Outburst Technology in Large-diameter Hole

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  • Published Date: February 09, 2012
  • In this paper,numerical simulation was used to study the relationship between the advanced drill hole's diameter at coal roadway heading face and the front coal destressing effect.It indicated that with the increasing of the advanced drill hole's diameter,the geostress of coal in front of heading face decreased,plastic zone was decrescence and the destressing effect was more outstanding.The test,about construction of large-diameter hole in tunneling process of Wulan coal mine 5867 machinery tunnel,showed that using large-diameter hole can decrease the number of holes by 2/3,shorten the construction period about 7 days and increased coal roadway tunneling speed four times above.
  • [1]
    于警伟,王兆丰,许彦鹏,等.松软煤层巷道军警快速消突技术应用研究[J].河南理工大学学报,2009,28(5):557-560.
    [2]
    于不凡.煤矿瓦斯灾害防治及利用技术手册[M].北京:煤炭工业出版社,2000.
    [3]
    周保国.煤巷掘进综合防突消突技术在何庄煤矿的应用[J].中州煤炭,2007(6):84-85.
    [4]
    王敬国,莫海涛,金新.松软煤层中螺旋钻进技术应用[J].煤矿安全,2007,38(11):27-29.
    [5]
    唐大勇.松软突出顺煤层异形钻杆及其施工工艺技术研究[J].煤矿机械,2011,32(4):220-222.
    [6]
    张长山.大孔径钻孔技术在乌兰矿“开花”[N].中国煤炭报,2010-02-08(2).
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