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SHEN Yuxu, KANG Tianhe, YANG Yongkang. Study on improving initial recovery rate by deep hole pre-splitting blasting of hard roof[J]. Safety in Coal Mines, 2021, 52(2): 188-193.
Citation: SHEN Yuxu, KANG Tianhe, YANG Yongkang. Study on improving initial recovery rate by deep hole pre-splitting blasting of hard roof[J]. Safety in Coal Mines, 2021, 52(2): 188-193.

Study on improving initial recovery rate by deep hole pre-splitting blasting of hard roof

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  • Published Date: February 19, 2021
  • It is difficult for the hard roof to collapse in the initial mining period of a mine 3407 working face, which is easy to cause problems such as support impact load, roof impact pressure and abnormal emission of toxic and harmful gases, by measuring the mechanical parameters of the coal seam and its roof and floor on the working face, detecting the mineral composition of basic roof fine sandstone and conducting a water-filled air drying experiment on it, ANSYS/LS-DYNA software was used to simulate the development of rock fractures after blasting, to formulate the plan of deep hole pre-splitting blasting, the borehole after blasting is peeped by rock hole detector, to observe the load change of hydraulic support on the working face during the initial mining period. The results show that water has very little damage to basic roof fine sandstone, LS-DYNA software blasting numerical simulation 3.5 m hole spacing can form roof penetration cracks, after cutting the top of 3407 working face by deep hole pre-splitting blasting, the initial pressure step distance of basic roof is 21.6 m, 9.6 m less than the previous working face, more than 5 600 t coal mining, the recovery rate increased by 14.4%, it not only solved the problem of large area hanging roof of hard roof in the early mining period, but also improved the coal recovery rate in the early mining period.
  • [1]
    钱鸣高,石平五,许家林.矿山压力与岩层控制[M]. 徐州:中国矿业大学出版社,2010.
    [2]
    索永录.综放开采坚硬顶煤预先爆破弱化技术基础研究[D].西安:西安科技大学,2004.
    [3]
    靳钟铭.放顶煤开采理论与技术[M].北京:煤炭工业出版社,2001.
    [4]
    刘健,刘泽功,高魁,等.不同装药模式爆破载荷作用下煤层裂隙扩展特征试验研究[J].岩石力学与工程学报,2016,35(4):735-742.

    LIU Jian, LIU Zegong, GAO Kui, et al. Experimental study of extension characters of cracks in coal seam under blasting load with different charging modes[J]. Chinese Journal of Rock Mechanics and Engineering, 2016, 35(4): 735-742.
    [5]
    姜耀东,潘一山,姜福兴,等.我国煤炭开采中的冲击地压机理和防治[J].煤炭学报,2014,39(2):205.

    JIANG Yaodong, PAN Yishan, JIANG Fuxing, et al. State of the art review on mechanism and prevention of coal bumps in China[J]. Journal of China Coal Society, 2014, 39(2): 205-213.
    [6]
    熊晓峰,黄庆国,李佳,等.坚硬顶板弱化技术对工作面矿压显现规律的影响研究[J].煤炭工程,2016,48(1):77-80.

    XIONG Xiaofeng, HUANG Qingguo, LI Jia, et al. Research on influence of hard roof weakening technology on mine pressure behavior law of working face[J]. Coal Engineering, 2016, 48(1): 77-80.
    [7]
    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.
    [8]
    王开,康天合,李海涛,等.坚硬顶板控制放顶方式及合理悬顶长度的研究[J].岩石力学与工程学报,2009, 28(11):2320-2327.

    WANG Kai, KANG Tianhe, LI Haitao, et al. Study of control caving methods and reasonable hanging roof lengtlh on hard roof[J]. Chinese Journal of Rock Mechanics and Engineering, 2009, 28(11): 2320-2327.
    [9]
    李金华,段东,岳鹏举,等.坚硬顶板强制放顶断裂力学模型研究[J].煤田地质与勘探,2018,46(6):128.

    LI Jinhua, DUAN Dong, YUE Pengju, et al. Study on the fracture mechanics model of forced caving of hard roof[J]. Coal Geology & Exploration, 2018, 46(6): 128.
    [10]
    焦振华,王浩,卢志国,等.厚层坚硬石灰岩顶板深孔预裂爆破技术研究[J].煤炭科学技术,2017,45(2):21-26.

    JIAO Zhenhua, WANG Hao, LU Zhiguo, et al. Study on deep borehole pre-fracturing blasting technology of thick and hard limestone roof[J]. Coal Science and Technology, 2017, 45(2): 21-26.
    [11]
    张冬华,田灵涛.深孔预裂爆破技术在深井坚硬完整顶板强制放顶中的应用[J].煤炭工程,2018,50(1):42-44.

    ZHANG Donghua, TIAN Lingtao. Application of deep-hole presplitting blasting technology in forced roof caving in hard complete roof deep shaft[J]. Coal Engineering , 2018, 50(1): 42-44.
    [12]
    王金鑫.深孔预裂爆破在综放工作面坚硬顶板控制中的试验研究[J].煤矿安全,2018,49(1):73-75.

    WANG Jinxin. Experimental study on deep-hole pre-splitting explosion in hard roof control of fully mechanized[J]. Safety in Coal Mines, 2018, 49(1): 73-75.
    [13]
    赵晋军.坚硬顶板综采工作面爆破放顶技术研究[J]. 煤炭工程,2019,51(8):56-59.

    ZHAO Jinjun. Study on the technology of forced roof caving in fully mechanized mining face[J]. Coal Engineering , 2019, 51(8): 56-59.
    [14]
    李廷春,张浩,张治高,等.综采工作面过大落差断层深孔预裂爆破技术[J].煤炭学报,2019,44(1):199.

    LI Tingchun, ZHANG Hao, ZHANG Zhigao, et al. Deep hole pre-plitting blasting technology when fully mechanized coal mining face passes through high drop fault[J]. Journal of China Coal Society, 2019, 44(1): 199-209.
    [15]
    张亮,解兴智.浅埋煤层坚硬顶板初采爆破放顶研究[J].煤矿开采,2014,19 (1):83-86.

    ZHANG Liang, XIE Xingzhi. Research on initial-mining roof blasting in shallow buried coal-seam[J]. Coal Mining Technology, 2014, 19 (1): 83-86.
    [16]
    李志峰.坚硬顶板深孔预裂爆破弱化技术应用[J].山东煤炭科技,2018(7):41-43.

    LI Zhifeng. Application of deep hole presplit blasting weakening technology in hard roof[J]. Shandong Coal Science and Technology, 2018(7): 41-43.
    [17]
    王永安,任智敏.古汉山矿定向预裂爆破切顶卸压沿空留巷技术[J].煤炭科学技术,2018,46(10):130.

    WANG Yongan, REN Zhimin. Technology of pressure relief by roof cutting for directional-predetermined crack blasting in gob-side entry retaining in Guhanshan mine[J]. Coal Science and Technology, 2018, 46(10): 130.
    [18]
    牟秀超,张百胜,杨永康,等.坚硬顶板综放面深孔预裂弱化顶板处理技术[J].中国煤炭,2017,43(6):62-66.

    MU Xiuchao, ZHANG Baisheng, YANG Yongkang, et al. Technology of roof weakening by deep-hole presplitting in fully mechanized caving face with hard roof[J]. China Coal, 2017, 43(6): 62-66.
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