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XIAO Dan, ZHAO Enbiao. Research on Roof Stability Control and Countermeasures of Weak Thick Coal Seam in Large Section Roadway[J]. Mining Safety & Environmental Protection, 2017, 44(6): 31-35,58.
Citation: XIAO Dan, ZHAO Enbiao. Research on Roof Stability Control and Countermeasures of Weak Thick Coal Seam in Large Section Roadway[J]. Mining Safety & Environmental Protection, 2017, 44(6): 31-35,58.

Research on Roof Stability Control and Countermeasures of Weak Thick Coal Seam in Large Section Roadway

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  • Available Online: September 16, 2022
  • Taking the roof fall accident caused by small fault structure in 20322 belt roadway in Wangjialing Coal Mine as the engineering background,field investigation was carried out on the the roof deformation and failure characteristics before the roof fall and the characteristics of the fall zone height after the roof fall,and based on this,analysis was made on the bed separation of the roof with different lithology by using RFPA numerical software.The analysis results showed that with the increase of the roof strength and stiffness,the roof stability was significantly improved.The technology of using the high prestressed multi-cable truss system to control the roof stability was proposed and analysis was carried out on its control effect and rational support parameters from the angle of mechanics.After the implementation of the symmetric support scheme by“multibeam anchor cable reinforced composite”,6 places where the roof was rather broken were selected for strata control observation,the observation results showed that the roof control effect was good.
  • [1]
    李季,樊龙,赵希栋,等.工作面切眼顶板冒顶危险区预测体系研究[J].采矿与安全工程学报,2014,31(3):390-398.
    [2]
    何富连,杨增强,魏臻.采动影响下碎裂煤巷注浆加固优化研究与应用[J].煤矿开采,2017,22(1):50-54.
    [3]
    张广超,何富连.大断面强采动综放煤巷顶板非对称破坏机制与控制对策[J].岩石力学与工程学报,2016,35(4):806-817.
    [4]
    李宪伟,王连国,侯化强,等.深井大断面软岩巷道数值模拟研究及注浆支护实践[J].矿业安全与环保,2012,39(1):46-48.
    [5]
    梅星.综放大断面沿空煤巷围岩稳定性及不对称支护[D].北京:中国矿业大学(北京),2016.
    [6]
    宗义江,韩立军,陈城,等.大断面极不稳定软岩巷道支护与施工成套技术研究[J].矿业安全与环保,2010,37(3):34-37.
    [7]
    窦林名,杨增强,丁小敏,等.高压射流割煤技术在防治冲击地压中的应用[J].煤炭科学技术,2013,41(6):10-13.
    [8]
    汪青,李卫龙.井下防爆激光测距仪系统设计及其应用[J].煤矿机械,2010,31(10):17-19.
    [9]
    白志飞.大采高综放采场矿压显现规律及围岩控制技术研究[D].太原:太原理工大学,2012.
    [10]
    高宏,杨永生,康先勇,等.五阳煤矿瓦斯抽采参数优化研究[J].矿业安全与环保,2013,40(3):29-32.
    [11]
    王立萌.大采高综放顶煤冒放分析及端面冒顶的防治技术[J].煤炭工程,2011(7):45-47.
    [12]
    刘鸿文.材料力学[M].4版.北京:高等教育出版社,2004.
    [13]
    何富连,殷东平,严红,等.采动垮冒型顶煤巷强力锚索桁架支护系统试验[J].煤炭科学技术,2011,39(2):1-5.
    [14]
    乔卫国,吕言新,林登阁,等.深井高应力不稳定软岩马头门加固技术研究[J].矿业安全与环保,2011,38(6):47-50.
    [15]
    许绍明,徐颖.大断面软岩巷道非对称破坏原因分析及控制对策[J].矿业安全与环保,2013,40(3):55-57.
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