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YIN Wentao. Analysis of rock burst accidents in coal mine based on behavioral safety[J]. Safety in Coal Mines, 2021, 52(2): 244-247.
Citation: YIN Wentao. Analysis of rock burst accidents in coal mine based on behavioral safety[J]. Safety in Coal Mines, 2021, 52(2): 244-247.

Analysis of rock burst accidents in coal mine based on behavioral safety

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  • Published Date: February 19, 2021
  • In order to study the behavioral causes of coal mine rock burst accidents, 24Model was applied to analyze the unsafe acts and physical causes of 10 typical rock burst accidents occurred after 2011. The results show that the depth of 80% of the rock burst accidents is over 800 m, 50% of the accident points are located in the fault area, and 90% of the rock burst accidents occur in the state-owned key coal mines. The occurrence process of the rock burst accidents can be divided into two stages: the formation process of the high stress concentration zone and the process of eliminating the rock burst risk. Seven categories of unsafe actions, which mainly include risk operation and failure of anti-impact measures, are obtained to eliminate the failure of rock burst hazard.
  • [1]
    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.
    [2]
    防治煤矿冲击地压细则[S].
    [3]
    傅贵,张苏,董继业,等.行为安全的理论实质与效果讨论[J].中国安全科学学报,2013,23(3):150-154.

    FU Gui, ZHANG Su, DONG Jiye, et al. Discussions on theoretical understanding and effects of behavior based safety[J]. China Safety Science Journal, 2013, 23(3): 150-154.
    [4]
    傅贵,吴琼,李亚,等.不安全动作与不安全物态的判定方法探讨[J].安全与环境学报,2017,17(3):994.

    FU Gui, WU Qiong, LI Ya, et al. Discussion and justification of the assessment methods of the unsafe acts and the unsafe conditions[J]. Journal of Safety and Environment, 2017, 17(3): 994.
    [5]
    Ugurlu O, Yildiz S, Loughney S, et al. Modified human factor analysis and classification system for passenger vessel accidents(HFACS-PV)[J]. Ocean Engineering, 2018, 16: 47-61.
    [6]
    潘一山,肖永惠,李忠华,等.冲击地压矿井巷道支护理论研究及应用[J].煤炭学报,2014,39(2):222.

    PAN Yishan, XIAO Yonghui, LI Zhonghua, et al. Study of tunnel support theory of rockburst in coal mine and its application[J]. Journal of China Coal Society, 2014, 39(2): 222-228.
    [7]
    赵善坤.强冲击危险厚煤层孤岛工作面切眼贯通防冲动态调控[J].采矿与安全工程学报,2017,34(1):67.

    ZHAO Shankun. Dynamical control of scour prevention in the isolated thick-seam working face with high outburst risk during its cut transfixion[J]. Journal of Mining & Safety Engineering, 2017, 34(1): 67-74.
    [8]
    刘金海.煤矿冲击地压监测预警技术新进展[J].煤炭科学技术,2016,44(6):71-77.

    LIU Jinhai. New progress on monitoring and early warning technology of mine strata pressure bump[J]. Coal Science and Technology, 2016, 44(6): 71-77.
    [9]
    傅贵,殷文韬,董继业,等.行为安全“2-4”模型及其在煤矿安全管理中的应用[J].煤炭学报,2013,38(7):1123-1129.

    FU Gui, YIN Wentao, DONG Jiye, et al. Behavior-based accident causation: The “2-4” model and its safety implications in coal mines[J]. Journal of China Coal Society, 2013, 38(7): 1123-1129.
    [10]
    杜学领,姚旺,李杨.2011-2013年4起典型冲击地压事故分析[J].煤矿安全,2015,46(1):183-185.

    DU Xueling, YAO Wang, LI Yang.Analysis of 4 typical rock burst accidents from 2011 to 2013 in china[J]. Safety in Coal Mines, 2015, 46(1): 183-185.
    [11]
    司德文.基于“4M因素”的煤矿冲击地压事故分析[J].煤矿现代化,2017(3):63-64.

    SI Dewen. Analysis of coal mine rock burst accident based on “4m factor”[J]. Coal Mine Modernization, 2017(3): 63-64.
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