Advance Search
WANG Guofa,PAN Yishan,ZHAO Shankun,et al. How to realize safe-efficient-intelligent mining of rock burst coal seam[J]. Coal Science and Technology,2024,52(1):1−14. DOI: 10.12438/cst.2023-1656
Citation: WANG Guofa,PAN Yishan,ZHAO Shankun,et al. How to realize safe-efficient-intelligent mining of rock burst coal seam[J]. Coal Science and Technology,2024,52(1):1−14. DOI: 10.12438/cst.2023-1656

How to realize safe-efficient-intelligent mining of rock burst coal seam

Funds: 

National Natural Science Foundation of China (51834006, 52274154); Key Research and Development Plan Funding Project of Ningxia Hui Autonomous Region (2023BEE01002)

More Information
  • Received Date: November 09, 2023
  • Available Online: December 25, 2023
  • How to realize safe and efficient intelligent mining of rock burst coal seam is an important industrial technical problem. This paper systematically analyzes the distribution characteristics, mining status and development trend of rock burst mine in China, and deeply analyzes the main mining problems faced by rock burst mine. From the aspects of regional ground stress monitoring and inversion, mine development layout optimization, coal pillar size optimization, combined depressurization up and down well, displacement and filling mining, separated layer grouting, etc., the development status of rock burst mine life cycle prevention and control technology is described. In view of the difficult problem of roadway rock burst prevention and control, the collaborative intelligent adaptive anti-impact support technology and equipment for all roadways with rock burst are developed. The energy absorption anti-impact hydraulic support is used to achieve the effect of strong support for roadway surrounding rock under normal condition and rapid displacement and energy absorption during the impact process. Based on intelligent migration device of support, monitoring and warning system of support and intelligent design method of all roadway collaborative adaptive anti-impact support, the prevention and control system of intelligent energy absorption support of roadway under rock burst is constructed. This paper analyzes the anti-shock principle of the intelligent mining system of coal face, proposes to predict and warn the location and probability of rock burst by monitoring and analyzing the mining stress of surrounding rock and the fracture structure of overlying rock, based on 3D geological model and big data algorithm, etc., and carry out intelligent linkage control on the supporting posture and supporting force of hydraulic support and the cutting speed of shearer through the intelligent mining system. Realize the intelligent mining of coal face and the intelligent prevention and control of rock burst. From the aspects of intelligent monitoring of stope stress and overburden structure, construction of rock burst disaster database, classification prediction and early warning of rock burst disaster, this paper analyzes the research and development focus of intelligent rock burst prevention and control technology, and puts forward the composition and overall structure of mine rock burst monitoring and early warning system. From the aspects of top-level design, key technology, intelligent and accurate crisis relief and effect evaluation, the technical path and research and development direction of realizing safe and efficient intelligent mining of coal seam with rock burst in China are put forward.

  • [1]
    潘一山,肖永惠,罗 浩,等. 冲击地压矿井安全性研究[J]. 煤炭学报,2023,48(5):1846−1860.

    PAN Yishan,XIAO Yonghui,LUO Hao,et al. Study on safety of rockburst mine[J]. Journal of China Coal Society,2023,48(5):1846−1860.
    [2]
    曹安业,窦林名,白贤栖,等. 我国煤矿矿震发生机理及治理现状与难题[J]. 煤炭学报,2023,48(5):1894−1918.

    CAO Anye,DOU Linming,BAI Xianxi,et al. State-of-the-art occurrence mechanism and hazard control of mining tremors and their challenges in Chinese coal mines[J]. Journal of China Coal Society,2023,48(5):1894−1918.
    [3]
    窦林名,田鑫元,曹安业,等. 我国煤矿冲击地压防治现状与难题[J]. 煤炭学报,2022,47(1):152−171.

    DOU Linming,TIAN Xinyuan,CAO Anye,et al. Present situation and problems of coal mine rock burst prevention and control in China[J]. Journal of China Coal Society,2022,47(1):152−171.
    [4]
    王志强,乔建永,武 超,等. 基于负煤柱巷道布置的煤矿冲击地压防治技术研究[J]. 煤炭科学技术,2019,47(1):69−78.

    WANG Zhiqiang,QIAO Jianyong,WU Chao,et al. Study on mine rock burst prevention and control technology based on gateway layout with negative coal pillars[J]. Coal Science and Technology,2019,47(1):69−78.
    [5]
    齐庆新,潘一山,李海涛,等. 煤矿深部开采煤岩动力灾害防控理论基础与关键技术[J]. 煤炭学报,2020,45(5):1567−1584.

    QI Qingxin,PAN Yishan,LI Haitao,et al. Theoretical basis and key technology of prevention and control of coal-rock dynamic disasters in deep coal mining[J]. Journal of China Coal Society,2020,45(5):1567−1584.
    [6]
    高家明,潘俊锋,杜涛涛,等. 我国东北矿区冲击地压发生特征及防治现状[J]. 煤炭科学技术,2021,49(3):49−56.

    GAO Jiaming,PAN Junfeng,DU Taotao,et al. Characteristics and prevention and control status quo of rock burst in Northeastern Mining Area of China[J]. Coal Science and Technology,2021,49(3):49−56.
    [7]
    窦林名,王盛川,巩思园,等. 冲击矿压风险智能判识与监测预警云平台[J]. 煤炭学报,2020,45(6):2248−2255.

    DOU Linming,WANG Shengchuan,GONG Siyuan,et al. Cloud platform of rockburst intelligent risk assessment and multiparameter monitoring and early warning[J]. Journal of China Coal Society,2020,45(6):2248−2255.
    [8]
    袁 亮. 煤矿典型动力灾害风险判识及监控预警技术研究进展[J]. 煤炭学报,2020,45(5):1557−1566.

    YUAN Liang. Research progress on risk identification,assessment,monitoring and early warning technologies of typical dynamic hazards in coal mines[J]. Journal of China Coal Society,2020,45(5):1557−1566.
    [9]
    何生全,何学秋,宋大钊,等. 冲击地压多参量集成预警模型及智能判识云平台[J]. 中国矿业大学学报,2022,51(5):850−862. doi: 10.3969/j.issn.1000-1964.2022.5.zgkydxxb202205003

    HE Shengquan,HE Xueqiu,SONG Dazhao,et al. Multi-parameter integrated early warning model and an intelligent identification cloud platform of rockburst[J]. Journal of China University of Mining and Technology,2022,51(5):850−862. doi: 10.3969/j.issn.1000-1964.2022.5.zgkydxxb202205003
    [10]
    夏永学,陆 闯,冯美华. 基于改进D-S证据理论的冲击地压预警方法[J]. 地下空间与工程学报,2022,18(4):1082−1088.

    XIA Yongxue,LU Chuang,FENG Meihua. Early warning method of rock burst based on improved D-S evidence theory[J]. Chinese Journal of Underground Space and Engineering,2022,18(4):1082−1088.
    [11]
    姜福兴,张 翔,朱斯陶. 煤矿冲击地压防治体系中的关键问题探讨[J]. 煤炭科学技术,2023,51(1):203−213.

    JIANG Fuxing,ZHANG Xiang,ZHU Sitao. Discussion on key problems in prevention and control system of coal mine rock burst[J]. Coal Science and Technology,2023,51(1):203−213.
    [12]
    陈 结,杜俊生,蒲源源,等. 冲击地压“双驱动”智能预警架构与工程应用[J]. 煤炭学报,2022,47(2):791−806.

    CHEN Jie,DU Junsheng,PU Yuanyuan,et al. “Dual-driven” intelligent pre-warning framework of the coal burst disaster in coal mine and its engineering application[J]. Journal of China Coal Society,2022,47(2):791−806.
    [13]
    王国法. 煤矿智能化最新技术进展与问题探讨[J]. 煤炭科学技术,2022,50(1):1−27.

    WANG Guofa. New technological progress of coal mine intelligence and its problems[J]. Coal Science and Technology,2022,50(1):1−27.
    [14]
    王国法,赵路正,庞义辉,等. 煤炭智能柔性开发供给体系模型与技术架构[J]. 煤炭科学技术,2021,49(12):1−10.

    WANG Guofa,ZHAO Luzheng,PANG Yihui,et al. Model and technical framework of smart flexible coal development-supply system[J]. Coal Science and Technology,2021,49(12):1−10.
    [15]
    王国法,杜毅博,徐亚军,等. 中国煤炭开采技术及装备50年发展与创新实践−纪念《煤炭科学技术》创刊50周年[J]. 煤炭科学技术,2023,51(1):1−18.

    WANG Guofa,DU Yibo,XU Yajun,et al. Development and innovation practice of China coal mining technology and equipment for 50 years: Commemorate the 50th anniversary of the publication of Coal Science and Technology[J]. Coal Science and Technology,2023,51(1):1−18.
    [16]
    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.
    [17]
    潘一山,宋义敏,刘 军. 我国煤矿冲击地压防治的格局、变局和新局[J]. 岩石力学与工程学报,2023,42(9):2081−2095.

    PAN Yishan,SONG Yimin,LIU Jun. Pattern,change and new situation of coal mine rockburst prevention and control in China[J]. Chinese Journal of Rock Mechanics and Engineering,2023,42(9):2081−2095.
    [18]
    王国法,巩师鑫,申 凯. 煤矿智能安控技术体系与高质量发展对策[J]. 矿业安全与环保,2023,50(5):1−8.

    WANG Guofa,GONG Shixin,SHEN Kai. Intelligent security control technology system and high-quality development countermeasures for coal mines[J]. Mining Safety & Environmental Protection,2023,50(5):1−8.
    [19]
    赵善坤,齐庆新,李云鹏,等. 煤矿深部开采冲击地压应力控制技术理论与实践[J]. 煤炭学报,2020,45( S2):626−636.

    ZHAO Shankun,QI Qingxin,LI Yunpeng,et al. Theory and practice of rockburst stress control technology in deep coal mine[J]. Journal of China Coal Society,2020,45( S2):626−636.
    [20]
    张宁博,商晶志,邓志刚,等. 基于地应力场反演的冲击危险性评价及防治[J]. 煤矿安全,2015,46(11):43−45,49.

    ZHANG Ningbo,SHANG Jingzhi,DENG Zhigang,et al. Hazard assessment and prevention of rock burst based on ground stress field inversion[J]. Safety in Coal Mines,2015,46(11):43−45,49.
    [21]
    赵善坤. 深孔顶板预裂爆破力构协同防冲机理及工程实践[J]. 煤炭学报,2021,46(11):3419−3432.

    ZHAO Shankun. Mechanism and application of force-structure cooperative prevention and control on rockburst with deep hole roof pre-blasting[J]. Journal of China Coal Society,2021,46(11):3419−3432.
    [22]
    潘俊锋,陆 闯,马小辉,等. 井上下煤层顶板区域压裂防治冲击地压系统及应用[J]. 煤炭科学技术,2023,51(2):106−115.

    PAN Junfeng,LU Chuang,MA Xiaohui,et al. System and application of regional fracking of coal seam roof on and under the ground to prevent rockburst[J]. Coal Science and Technology,2023,51(2):106−115.
    [23]
    刘 旺. 采动覆岩离层注浆减沉控制研究[D]. 徐州: 中国矿业大学,2022.
    [24]
    庞义辉,王国法. 大采高液压支架结构优化设计及适应性分析[J]. 煤炭学报,2017,42(10):2518−2527.

    PANG Yihui,WANG Guofa. Hydraulic support with large mining height structural optimal design and adaptability analysis[J]. Journal of China Coal Society,2017,42(10):2518−2527.
    [25]
    WANG Guofa,PANG Yihui. Surrounding rock control theory and longwall mining technology innovation [J]. International Journal of Coal Science & Technology, 2017,4(4):301−309.
    [26]
    王国法. 加快煤矿智能化建设 推进煤炭行业高质量发展[J]. 中国煤炭,2021,47(1):2−10.

    WANG Guofa. Speeding up intelligent construction of coal mine and promoting high-quality development of coal industry[J]. China Coal, 2021,47(1):2−10.
    [27]
    潘一山,肖永惠,李国臻,等. 一种矿用消波耗能缓冲装置设计及试验初探[J]. 岩石力学与工程学报,2012,31(4):649−655. doi: 10.3969/j.issn.1000-6915.2012.04.002

    PAN Yishan,XIAO Yonghui,LI Guozhen,et al. Design of a buffer device for absorbing waves and energy in mining and its primary experiments[J]. Chinese Journal of Rock Mechanics and Engineering,2012,31(4):649−655. doi: 10.3969/j.issn.1000-6915.2012.04.002
    [28]
    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):222−228.

    PAN Yishan,XIAO Yonghui,LI Zhonghua,et al. Study on tunnel support theory of rockburst in coal mine and its application[J]. Journal of China Coal Society,2014,39(2):222−228.
    [29]
    防治煤矿冲击地压细则[S]. 北京:国家煤矿安全监察局,2018.
    [30]
    齐庆新,马世志,孙希奎,等. 煤矿冲击地压源头防治理论与技术架构[J]. 煤炭学报,2023,48(5):1861−1874.

    QI Qingxin,MA Shizhi,SUN Xikui,et al. Theory and technical framework of coal mine rock burst origin prevention[J]. Journal of China Coal Society,2023,48(5):1861−1874.
  • Cited by

    Periodical cited type(29)

    1. 李家卓,闫康行,王洪涛,窦林名,马衍坤,宋士康,卢育,徐振忠,黎旭博. 考虑损伤效应的开拓巷道冲击地压发生机理及防控技术体系. 采矿与安全工程学报. 2025(01): 137-146 .
    2. 杨皓博,李晶昆. 向斜构造区厚硬顶板巷道冲击破坏机理研究. 陕西煤炭. 2025(02): 17-23+29 .
    3. 刘勇,孙鹏宫,李广汉,郭宝龙,曹晨. 深井宽煤柱工作面冲击地压致冲机理与分类防治技术研究. 煤炭技术. 2025(02): 15-20 .
    4. 王剑,王兆义,李广汉,郭宝龙,曹晨. 高应力孤立煤体冲击机理及监测预警系统研究. 煤炭技术. 2025(02): 159-163 .
    5. 边戈,顾倩悦,高红兵,曹安业,李煜,徐天,刘彦强,何俊江. 非对称大巷煤柱区冲击地压防治技术研究. 煤炭技术. 2025(03): 74-79 .
    6. 刘亚明. 强动压巷道围岩裂变效应及其主控裂隙联动破坏. 山西煤炭. 2025(01): 32-41 .
    7. 槐利. 基于矿鸿的液压支架物联网电液控系统架构设计. 能源与环保. 2025(01): 175-180 .
    8. 杨仁树,左进京,李永亮,马鑫民,张渊通,于冰冰,王波. 深部煤矿“以爆抑灾”机理与技术研究进展. 煤炭学报. 2025(01): 132-149 .
    9. 于斌,孟祥斌,邰阳,尚子榆,彭明贤,匡铁军,郭飞龙,李东印,王世博. 坚硬顶板特厚冲击煤层智能高效安全开采关键技术. 煤炭学报. 2025(01): 245-263 .
    10. 陈广振. 基于大数据分析的防冲智能预警系统研究. 信息记录材料. 2025(03): 123-125 .
    11. 崔峰,罗钟,来兴平,陈建强,彭宝山,邹磊,刘旭东. 冲击地压矿井科学产能确定及科学提升产能研究. 煤炭科学技术. 2025(02): 81-95 . 本站查看
    12. 郝业,杨惟博,王鲜,赵璠,李方典. 倾斜煤层面间煤柱留设及顶底板变化规律. 西安科技大学学报. 2025(02): 419-428 .
    13. 顾倩悦,边戈,李庚,李煜,曹安业,高红兵,张传伟. 非对称大巷煤柱区工作面终采线位置优化设计. 煤炭技术. 2025(05): 117-122 .
    14. 周玏玏,殷宣东,赵伟,张春燕,乔印虎,何俊蓉. 自动秸秆取样装备设计与试验. 山东农业工程学院学报. 2025(02): 14-22 .
    15. 赵同彬,尹延春,任文涛,张庆志,高久国,赵志刚. 基于煤体卸压钻孔钻屑的冲击危险性检测方法及应用. 煤炭学报. 2025(05): 2384-2393 .
    16. 程继杰,刘毅. 基于深度特征的煤矿冲击地压和煤与瓦斯突出图像感知报警方法. 煤炭科学技术. 2024(03): 245-257 . 本站查看
    17. 潘俊锋,夏永学,王书文,马文涛,张晨阳,王冰. 我国深部冲击地压防控工程技术难题及发展方向. 煤炭学报. 2024(03): 1291-1302 .
    18. 杜刚,王超,刘锋. 长壁工作面顶板破断震动诱发冲击地压机理. 煤矿现代化. 2024(03): 123-127 .
    19. 孙四清,杨帆,郑玉岐,张庆利. 煤层瓦斯含量测定技术及装备研究进展. 煤炭科学技术. 2024(04): 164-176 . 本站查看
    20. 王桂峰,张崟峰,王忠宾,静涛,窦林名,曹安业,胡非凡,刘心强,冯淦. 煤体应力随钻监测响应特征及智能感知技术研究. 采矿与安全工程学报. 2024(05): 1069-1077 .
    21. 王朝阳,钱子强,张继业. 巷道冲击地压载荷特征及防冲支护装备研究. 能源与环保. 2024(09): 268-274 .
    22. 祁和刚,夏永学,智宝岩,秦子晗,程健,王凯,王书文,王宾昌,杨光宇. 冲击地压煤层智能开采关键技术研究与实践. 煤炭科学技术. 2024(09): 112-124 . 本站查看
    23. 李明忠,赵文革,闫汝瑜,王家臣,雷亚军,杨征,韩会军,张金虎,冯彦军,张德生,黄志增. 超高与超长工作面高效综采关键技术及装备发展现状与展望. 煤炭科学技术. 2024(09): 199-209 . 本站查看
    24. 王海军,郑三龙,王相业,董敏涛,吴艳,马良,杨伟,朱玉英. 地质构造隐蔽致灾因素透明化勘查技术——以新疆屯宝煤矿为例. 煤炭科学技术. 2024(09): 173-188 . 本站查看
    25. 王岗,于晓杰,王爱文,肖晓春,王永,丁鑫,王维斌,徐赠俊,杜璐璐. 覆岩承压含水层疏水应力场演化规律电荷监测研究. 煤田地质与勘探. 2024(10): 106-118 .
    26. 李鑫,刘志勇,杨桢,李昊,周婧,卜婧然,王艺儒. 基于CEEMD-IDWT的受载煤岩微震电压去噪算法. 电子测量与仪器学报. 2024(08): 124-136 .
    27. 赵善坤,王炳钦,苏振国,李少刚,史月,桑辛成,刘安,韩伟歌. 坚硬厚顶板岩层定向长钻孔水力压裂防冲技术及应用. 煤矿安全. 2024(12): 10-21 .
    28. 邓志刚,李云鹏,赵善坤,王寅,李少刚,孔令海,蒋军军,苏振国,李一哲,秦凯. 冲击地压煤层智能安全高效开采系统架构与关键技术. 煤矿安全. 2024(12): 1-9 .
    29. 肖晓春,李子阳,丁鑫,徐军,朱恒,丁振. 矿用超前液压支架吸能构件仿真及试验研究. 煤炭科学技术. 2024(12): 247-258 . 本站查看

    Other cited types(19)

Catalog

    Article views (1064) PDF downloads (427) Cited by(48)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return