LI Xiteng, QIN Hongnan, CHEN Guanda, et al. Evaluation model and application research of intelligent emergency response capability of coal mining enterprises[J]. Safety in Coal Mines, 2023, 54(11): 233−239. DOI: 10.13347/j.cnki.mkaq.2023.11.032
    Citation: LI Xiteng, QIN Hongnan, CHEN Guanda, et al. Evaluation model and application research of intelligent emergency response capability of coal mining enterprises[J]. Safety in Coal Mines, 2023, 54(11): 233−239. DOI: 10.13347/j.cnki.mkaq.2023.11.032

    Evaluation model and application research of intelligent emergency response capability of coal mining enterprises

    More Information
    • Received Date: February 16, 2023
    • Available Online: November 21, 2023
    • In order to deeply explore the influencing factors of intelligent emergency capacity construction in coal mine enterprises, firstly, the confirmatory factors are used to assume the influencing factors of intelligent emergency capacity, and the initial theoretical model is constructed. Secondly, the structural equation model was used to carry out reliability and validity analysis, fit evaluation and mediation effect test for the influencing factors, verify the factor load and path coefficient among the influencing factors, and carry out the research hypothesis test results. Then, the mediation effect test and correction discrimination were carried out for the model. Finally, the model results are analyzed. The results show that monitoring and warning ability and system integration ability have significant positive effects on intelligent emergency response ability. Information management ability and information team ability have positive and positive moderating effect on intelligent emergency capacity building; data processing ability has a significant positive effect on the improvement of intelligent emergency response ability.

    • [1]
      张雅萍,栗继祖,冯国瑞,等. 冲突管理对煤矿应急管理水平作用机制研究[J]. 煤矿安全,2017,48(8):246−249.

      ZHANG Yaping, LI Jizu, FENG Guorui, et al. Study on mechanism of conflict management on emergency management level of mine[J]. Safety in Coal Mines, 2017, 48(8): 246−249.
      [2]
      陈杰. 智慧矿山安全防控多系统井下融合与应急联动技术研究[J]. 煤矿安全,2022,53(5):99−105.

      CHEN Jie. Research on multi-system underground integration and emergency linkage technology for smart mine safety prevention and control[J]. Safety in Coal Mines, 2022, 53(5): 99−105.
      [3]
      王恒晓. 基于多源数据融合的煤矿安全态势感知分析平台研究[J]. 煤矿安全,2022,53(8):242−246. doi: 10.13347/j.cnki.mkaq.2022.08.038

      WANG Hengxiao. Research on coal mine safety situation awareness analysis platform based on multi-source data fusion[J]. Safety in Coal Mines, 2022, 53(8): 242−246. doi: 10.13347/j.cnki.mkaq.2022.08.038
      [4]
      姚建义,金雅玲,汤晓勇,等. 突发公共卫生事件智慧应急发展探讨[J]. 中国工程科学,2021,23(5):34−40.

      YAO Jianyi, JIN Yaling, TANG Xiaoyong, et al. Development of intelligent response to public health emergencies[J]. Strategic Study of CAE, 2021, 23(5): 34−40.
      [5]
      陶振. 迈向智慧应急:组织愿景、运作过程与发展路径[J]. 广西社会科学,2022,324(6):120−129.

      TAO Zhen. Heading for intelligent emergency: organizational vision, operation process and development path[J]. Social Sciences in Guangxi, 2022, 324(6): 120−129.
      [6]
      宋元涛,王大伟,杨春立,等. 以信息化加速推进应急管理现代化[J]. 中国应急管理,2021,174(6):14−25.
      [7]
      白光星,陈炜乐,孙勇,等. 煤矿带式输送机运输火灾风险智能监测与早期预警技术研究进展[J]. 煤矿安全,2022,53(9):47−54. doi: 10.13347/j.cnki.mkaq.2022.09.007

      BAI Guangxing, CHEN Weile, SUN Yong, et al. Research progress on intelligent monitoring and early warning technology of fire risk in coal mine belt conveyor transportation[J]. Safety in Coal Mines, 2022, 53(9): 47−54. doi: 10.13347/j.cnki.mkaq.2022.09.007
      [8]
      李峰,唐佳,李子依,等. 矿用局部通风机分级变频控制策略及数值模拟[J]. 煤矿安全,2023,54(3):100−108. doi: 10.13347/j.cnki.mkaq.2023.03.016

      LI Feng, TANG Jia, LI Ziyi, et al. Graded frequency control strategy and numerical simulation of mine local ventilator[J]. Safety in Coal Mines, 2023, 54(3): 100−108. doi: 10.13347/j.cnki.mkaq.2023.03.016
      [9]
      李树刚,马莉,杨守国. 互联网+煤矿安全信息化关键技术及应用构架[J]. 煤炭科学技术,2016,44(7):34−40.

      LI Shugang, MA Li, YANG Shouguo, et al. Key technology and application framework of internet plus mine safety informationization[J]. Coal Science and Technology, 2016, 44(7): 34−40.
      [10]
      周丹. 基于结构方程模型的食品安全公众满意度分析[D]. 昆明: 云南大学, 2020.
      [11]
      李文琴,崔博露,张巍,等. 基于SEM的矿工安全素养对不安全行为的影响研究[J]. 煤矿安全,2023,54(1):246−251.

      LI Wenqin, CUI Bolu, ZHANG Wei, et al. Research on the influence of miners’ safety literacy on unsafe behavior based on SEM[J]. Safety in Coal Mines, 2023, 54(1): 246−251.
      [12]
      陈雁翙. 基于结构方程模型的纳税人满意度研究[D]. 长沙: 湖南师范大学, 2016.
      [13]
      安赟. 基于结构方程模型的上市公司高管薪酬影响因素研究[D]济南: 山东大学, 2009.
    • Related Articles

      [1]CHENG Lianhua, LI Gang, CAO Dongqiang, GUO Huimin, ZHAO Xudong. Evaluation method and application of miners’ emergency capability based on information processing theory[J]. Safety in Coal Mines, 2024, 55(6): 241-248. DOI: 10.13347/j.cnki.mkaq.20231397
      [2]LIANG Yan, CHEN Hao, ZHANG Yongling, GUO Ying. Evaluation model of coal mine emergency rescue collaborative ability based on G1-DEMATEL-measurement quantification[J]. Safety in Coal Mines, 2022, 53(11): 254-258.
      [3]AN Qiannan, LI Jizu. Influence of knowledge sharing on miners’ willingness to accept intelligent equipment based on technology acceptance model[J]. Safety in Coal Mines, 2022, 53(5): 236-240.
      [4]QIAN Hongwei, YU Qing. Analysis and Evaluation of Influencing Factors on Emergency Command Ability of Coal Mine Gas Accidents[J]. Safety in Coal Mines, 2020, 51(11): 295-298.
      [5]YI Tao, LI Jizu, FENG Guorui, KANG Lixun, SONG Yan, QU Jiaojiao. Research on Relationship Between Organizational Structure Reform and Miners’ Unsafe Behavioral Intention[J]. Safety in Coal Mines, 2020, 51(4): 248-252.
      [6]MIAO Chenglin, SUN Liyan, YANG Li, YANG Xinglong. Impact Analysis of Habitual Domain on Emergency Ability of Coalmine Sudden Events[J]. Safety in Coal Mines, 2017, 48(12): 237-240.
      [7]YU Baohua, HE Gang, LI Shuzhou. Comprehensive Evaluation of Miners’ Safety Behavior Ability Based on Network Model[J]. Safety in Coal Mines, 2017, 48(7): 250-252.
      [8]LI Yonghui, LIN Haifei, WANG Zhenping, WANG Yongsheng, YU Xiaobo. Study on Influence Factors of Enterprise Safety Culture Based on Structural Equation Model[J]. Safety in Coal Mines, 2017, 48(5): 236-239.
      [9]LI Yan, LI Fang, LI Hongxia. Analysis of Influence of Miners Social Network Structure on the Coal Enterprise Safety Culture[J]. Safety in Coal Mines, 2014, 45(5): 224-226,227.
      [10]GUO Kai. Assessment of Coal Mine Safety Influencing Factors Based on Structural Equation Model[J]. Safety in Coal Mines, 2012, 43(7): 217-219.
    • Cited by

      Periodical cited type(8)

      1. 解文杰,孙传利,高亮亮. 矿井采掘煤层瓦斯抽采技术可行性研究. 西部探矿工程. 2025(02): 124-126+129 .
      2. 缑晓锋,杨飞,窦成义,郑文龙,和递,孔祥国. 特厚煤层定向长钻孔水力压裂瓦斯抽采技术及应用. 陕西煤炭. 2024(02): 65-69 .
      3. 温志强,陈学习,金霏阳,陈星宇. 高应力松软突出煤层定向长钻孔水力冲孔技术研究. 煤炭技术. 2024(03): 154-159 .
      4. 王晓东,戴康,孙海涛,满忠毅,李文龙,田纪辉. 卸压增透下底板定向拦截钻孔瓦斯抽采模拟研究. 煤炭技术. 2024(04): 155-160 .
      5. 曹艺钟. 离心式机械扩孔造穴装备在矿井瓦斯治理中的应用. 矿山机械. 2024(07): 11-15 .
      6. 吕杰. 水力压裂技术在矿井瓦斯抽采中的应用研究. 西部探矿工程. 2024(12): 154-156 .
      7. 崔伟. 瓦斯抽采钻孔封堵一体化封孔技术研究. 山东煤炭科技. 2023(10): 69-72 .
      8. 时巨辉. 低透气性煤层水力压裂增透瓦斯抽采技术研究. 山西冶金. 2023(10): 216-217+222 .

      Other cited types(1)

    Catalog

      Article views (66) PDF downloads (10) Cited by(9)

      /

      DownLoad:  Full-Size Img  PowerPoint
      Return
      Return