DOU Guidong, JIA Zenglin, GAO Yonggang, et al. Research on regional anti-burst and pressure relief technology of roadway group affected by mining in thick and hard roof working face[J]. Industry and Mine Automation, 2021, 47(12): 32-38. doi: 10.13272/j.issn.1671-251x.2021060036
Citation: DOU Guidong, JIA Zenglin, GAO Yonggang, et al. Research on regional anti-burst and pressure relief technology of roadway group affected by mining in thick and hard roof working face[J]. Industry and Mine Automation, 2021, 47(12): 32-38. doi: 10.13272/j.issn.1671-251x.2021060036

Research on regional anti-burst and pressure relief technology of roadway group affected by mining in thick and hard roof working face

doi: 10.13272/j.issn.1671-251x.2021060036
  • Received Date: 2021-06-14
  • Rev Recd Date: 2021-12-06
  • Publish Date: 2021-12-20
  • Under the impact of special geological and mining technology conditions, the roadway group area near the working face of the mine threatened by the rock-burst disasters is often in the high stress environment with a high impact risk. In order to solve the problem of roadway group regional anti-burst and pressure relief under the impact of mining in thick and hard roof working face, taking the 40309 working face of Shaanxi Binchang Xiaozhuang Mining Co., Ltd. as the engineering background, through on-site monitoring, the microseismic, ground sound and stress data at the end of working face mining are obtained. And the analysis show that the peripheral connecting roadway, chamber and central main roadway at the end of the working face are within the impact range of working face mining, and the impact risk continues to increase due to the impact of mining. The theoretical analysis shows that the reason for the impact risk of roadway group under the impact of mining in 40309 working face is the superposition and accumulation of concentrated dynamic and static loads in roadway group area under the condition of thick and hard roof. Aiming at different roadway areas of 40309 working face, the deep hole and ultra-deep hole roof presplitting blasting anti-burst pressure relief scheme is proposed, and the engineering practice and effect test are carried out. The results show that after adopting the anti-burst pressure relief scheme, the frequency and energy of microseisms in the 40309 working face and the nearby roadway group area are reduced by 55% and 60% respectively, the proportion of the c and d levels in the ground sound monitoring disaster level has decreased by 22.8%, the degree of regional stress concentration of the roadway group is significantly reduced, and the impact risk is significantly reduced. The working face and nearby chambers, connecting roadways and central roadways have no deformation and dynamic phenomena, and the anti-burst effect is good.

     

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  • [1]
    潘俊锋,毛德兵,蓝航,等.我国煤矿冲击地压防治技术研究现状及展望[J].煤炭科学技术,2013,41(6):21-25.

    PAN Junfeng,MAO Debing,LAN Hang,et al.Study status and prospects of mine pressure bumping control technology in China[J].Coal Science and Technology,2013,41(6):21-25.
    [2]
    齐庆新,李一哲,赵善坤,等.我国煤矿冲击地压发展70年:理论与技术体系的建立与思考[J].煤炭科学技术,2019,47(9):1-40.

    QI Qingxin,LI Yizhe,ZHAO Shankun,et al.Seventy years development of coal mine rockburst in China:establishment and consideration of theory and technology system[J].Coal Science and Technology,2019,47(9):1-40.
    [3]
    李玉生.冲击地压机理及其初步应用[J].中国矿业学院学报,1985,15(3):37-43.

    LI Yusheng.Rockburst mechanism and its preliminary application[J].Journal of China University of Mining & Technology,1985,15(3):37-43.
    [4]
    齐庆新,李晓璐,赵善坤.煤矿冲击地压应力控制理论与实践[J].煤炭科学技术,2013,41(6):1-5.

    QI Qingxin,LI Xiaolu,ZHAO Shankun.Theory and practices on stress control of mine pressure bumping[J].Coal Science and Technology,2013,41(6):1-5.
    [5]
    齐庆新,潘一山,舒龙勇,等.煤矿深部开采煤岩动力灾害多尺度分源防控理论与技术架构[J].煤炭学报,2018,43(7):1801-1810.

    QI Qingxin,PAN Yishan,SHU Longyong,et al.Theory and technical framework of prevention and control with different sources in multi-scales for coal and rock dynamic disasters in deep mining of coal mines[J].Journal of China Coal Society,2018,43(7):1801-1810.
    [6]
    窦林名,陆菜平,牟宗龙,等.冲击矿压的强度弱化减冲理论及其应用[J].煤炭学报,2005,30(6):690-694.

    DOU Linming,LU Caiping,MOU Zonglong,et al.Intensity weakening theory for rockburst and its application[J].Journal of China Coal Society,2005,30(6):690-694.
    [7]
    窦林名,陆菜平,牟宗龙,等.煤岩体的强度弱化减冲理论[J].河南理工大学学报(自然科学版),2005,24(3):169-175.

    DOU Linming,LU Caiping,MOU Zonglong,et al.The theory of intensity weakening for rockburst in coal mine[J].Journal of Henan Polytechnic University,2005,24(3):169-175.
    [8]
    潘俊锋,宁宇,毛德兵,等.煤矿开采冲击地压启动理论[J].岩石力学与工程学报,2012,31(3):586-596.

    PAN Junfeng,NING Yu,MAO Debing,et al.Theory of rockburst start-up during coal mining[J].Chinese Journal of Rock Mechanics and Engineering,2012,31(3):586-596.
    [9]
    潘俊锋.煤矿冲击地压启动理论及其成套技术体系研究[J].煤炭学报,2019,44(1):173-182.

    PAN Junfeng.Theory of rockburst start-up and its complete technology system[J].Journal of China Coal Society,2019,44(1):173-182.
    [10]
    窦林名,阚吉亮,李许伟,等.断顶爆破防治冲击矿压技术体系及效果评价研究[J].煤炭科学技术,2020,48(1):24-32.

    DOU Linming,KAN Jiliang,LI Xuwei,et al.Study on prevention technology of rock burst by break-tip blasting and its effect estimation[J].Coal Science and Technology,2020,48(1):24-32.
    [11]
    潘一山.煤矿冲击地压扰动响应失稳理论及应用[J].煤炭学报,2018,43(8):2091-2098.

    PAN Yishan.Disturbance response instability theory of rockburst in coal mine[J].Journal of China Coal Society,2018,43(8):2091-2098.
    [12]
    潘俊锋,宁宇,秦子晗,等.基于冲击启动理论的深孔区间爆破疏压技术[J].岩石力学与工程学报,2012,31(7):1414-1421.

    PAN Junfeng,NING Yu,QIN Zihan,et al.Dredging technology of pressure with deep-hole interval blasting based on theory of rock burst start-up[J].Chinese Journal of Rock Mechanics and Engineering,2012,31(7):1414-1421.
    [13]
    夏永学,蓝航,毛德兵,等.基于微震监测的超前支承压力分布特征研究[J].中国矿业大学学报,2011,40(6):868-873.

    XIA Yongxue,LAN Hang,MAO Debing,et al.Study of the lead abutment pressure distribution base on microseismic monitoring[J].Journal of China University of Mining & Technology,2011,40(6):868-873.
    [14]
    窦林名,何江,曹安业,等.煤矿冲击矿压动静载叠加原理及其防治[J].煤炭学报,2015,40(7):1469-1476.

    DOU Linming,HE Jiang,CAO Anye,et al.Rock burst prevention methods based on theory of dynamic and static combined load induced in coal mine[J].Journal of China Coal Society,2015,40(7):1469-1476.
    [15]
    窦林名,白金正,李许伟,等.基于动静载叠加原理的冲击矿压灾害防治技术研究[J].煤炭科学技术,2018,46(10):1-8.

    DOU Linming,BAI Jinzheng,LI Xuwei,et al.Study on prevention and control technology of rockburst disaster based on theory of dynamic and static combined load[J].Coal Science and Technology,2018,46(10):1-8.
    [16]
    韩泽鹏,窦林名,王正义,等.动静载影响下大倾角工作面巷道两帮应力分布规律研究[J].煤炭科学技术,2019,47(9):183-188.

    HAN Zepeng,DOU Linming,WANG Zhengyi,et al.Research on stress distribution law of two ribs in large dip angle working face under influence of dynamic and static loads[J].Coal Science and Technology,2019,47(9):183-188.
    [17]
    翟明华,姜福兴,齐庆新,等.冲击地压分类防治体系研究与应用[J].煤炭学报,2017,42(12):3116-3124.

    ZHAI Minghua,JIANG Fuxing,QI Qingxin,et al.Research and practice of rock burst classified control system[J].Journal of China Coal Society,2017,42(12):3116-3124.
    [18]
    窦林名,姜耀东,曹安业,等.煤矿冲击矿压动静载的"应力场-震动波场"监测预警技术[J].岩石力学与工程学报,2017,36(4):803-811.

    DOU Linming,JIANG Yaodong,CAO Anye,et al.Monitoring and pre-warning of rockburst hazard with technology of stress field and wave field in underground coalmines[J].Chinese Journal of Rock Mechanics and Engineering,2017,36(4):803-811.
    [19]
    牟宗龙,窦林名,张广文,等.坚硬顶板型冲击矿压灾害防治研究[J].中国矿业大学学报,2006,35(6):737-741.

    MOU Zonglong,DOU Linming,ZHANG Guangwen,et al.Study of prevention methods of rock burst disaster caused by hard rock roof[J].Journal of China University of Mining & Technology,2006,35(6):737-741.
    [20]
    李振雷,何学秋,窦林名.综放覆岩破断诱发冲击地压的防治方法与实践[J].中国矿业大学学报,2018,47(1):162-171.

    LI Zhenlei,HE Xueqiu,DOU Linming.Control measures and practice for rock burst induced by overburden fracture in top-coal caving mining[J].Journal of China University of Mining & Technology,2018,47(1):162-171.
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