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WANG Delu, DING Yongxin, SHAO Qing. Assessment Model and Application of Emergency Capability in Coal Enterprises Based on Improved ANP[J]. Safety in Coal Mines, 2018, 49(3): 237-241.
Citation: WANG Delu, DING Yongxin, SHAO Qing. Assessment Model and Application of Emergency Capability in Coal Enterprises Based on Improved ANP[J]. Safety in Coal Mines, 2018, 49(3): 237-241.

Assessment Model and Application of Emergency Capability in Coal Enterprises Based on Improved ANP

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  • Published Date: March 19, 2018
  • The emergency capability management of coal enterprises is the most important content of coal mine safety management. Constructing assessment model of emergency capability and applying it effectively is significant for coal enterprises to decrease coal production accidents and reduce the loss of production accidents. In order to improve the emergency capabilities in coal enterprise, the paper summarizes the assessment index system of emergency capability of safe production in coal enterprise based on the existing literature, consisting of four first class indices and twenty-two secondary indices. Moreover, the paper builds a new assessment model of emergency capability in coal enterprises based on ANP and triangular fuzzy number. Finally, the paper takes an example of a coal enterprise and uses the model to assess the emergency capability, and the effectiveness of the model is verified by the application.
  • [1]
    毕树兵.我国煤炭安全管理的现状及应对措施[J].内蒙古煤炭经济,2014(5):80-81.
    [2]
    宋华岭,金智新,白希军,等.矿井生产系统结构复杂性评价[J].煤炭学报,2005(3):403-408.
    [3]
    王兆丰,刘军.我国煤矿瓦斯抽放存在的问题及对策探讨[J].煤矿安全,2005,36(3):29-32.
    [4]
    李波,巨广刚,王珂,等.2005—2014年我国煤矿灾害事故特征及规律研究[J].矿业安全与环保,2016,43(3):111-114.
    [5]
    Haddow G, Bullock J, Coppola D P. Introduction to emergency management[M]. Butterworth-Heinemann,2017.
    [6]
    吕志强.煤矿安全管理中行为安全理论的运用探究[J].技术与市场,2017,24(2):102.
    [7]
    丁琰.煤炭工程的施工安全与事故处理[J].内蒙古煤炭经济,2016(11):63-64.
    [8]
    李树刚,王璐.基于ANP-BP方法的煤矿应急能力评价研究[J].矿业安全与环保,2014,41(6):115-119.
    [9]
    Chen G, Zhang X. Fuzzy-based methodology for performance assessment of emergency planning and its application[J]. Journal of Loss Prevention in the Process Industries, 2009, 22(2): 125-132.
    [10]
    王璐,李树刚,成连华,等.基于PDCA模式的煤矿应急能力评价指标体系[J].煤矿安全,2014,45(8):241-244.
    [11]
    徐阳.煤矿安全生产面临的问题及对策[J].中国安全生产科技技术,2012,8(6):229-232.
    [12]
    苗成林.基于多级模糊综合评价法的煤矿企业应急能力评价研究[J].中国安全生产科学技术,2013,9(11):103-108.
    [13]
    戚宏亮,宁云才.基于可拓学理论煤矿安全应急管理能力评价[J].煤炭工程,2016,48(9):161-164.
    [14]
    曾平.煤矿应急物流能力模型构建与运用研究[D].太原:太原理工大学,2016.
    [15]
    金永飞,靳运章.我国煤矿安全生产存在的若干问题及应对措施[J].煤矿安全,2015,46(4):234-240.
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