[1] |
国务院安委会办公室印发《标本兼治遏制重特大事故工作指南》[J]. 中国应急管理, 2016(4): 50-51.
|
[2] |
曹杨, 胡忠前, 吕松松, 等. 海洋石油重大事故隐患判定标准依据探析[J]. 天然气与石油, 2021, 39(4): 110-116.
|
|
CAO Yang, HU Zhongqian, LYU Songsong, et al. Study on the identification basis of potential hazards in major offshore oil incidents[J]. Natural Gas and Oil, 2021, 39(4): 110-116.
|
[3] |
曹杨. 我国海洋石油事故隐患分类与分级研究[J]. 中国安全科学学报, 2023, 33(增1): 42-46.
|
|
CAO Yang. Classification and gradation of hidden dangers of offshore oil in China[J]. China Safety Science Journal, 2023, 33(S1): 42-46.
doi: 10.16265/j.cnki.issn1003-3033.2023.S1.1623
|
[4] |
贺泰霖. 油气储运事故隐患的辨识分析及管控方法研究[D]. 北京: 中国地质大学(北京), 2016.
|
|
HE Tailin. Identification analysis and control methods of accident potential hazards in oil and gas storage and transportation[D]. Beijing: China University of Geosciences (Beijing), 2016.
|
[5] |
原国家安全生产监督管理总局. 安全生产事故隐患排查治理暂行规定[EB/OL].(2007-12-28). https://www.mem.gov.cn/gk/zfxxgkpt/fdzdgknr/gz11/200712/t20071228_405675.shtml.
|
[6] |
李倩. 上海市重大事故隐患分级评价方法的研究[C]. 全国第二次安全科学技术学术交流大会论文集, 2002: 236-240.
|
[7] |
万古军. 基于风险值的中国石化安全风险量化分级管控[J]. 安全、健康和环境, 2018, 18(1): 40-43.
|
|
WAN Gujun. Quantitative and classified control of SINOPEC safety risk based on risk value[J]. Safety Health & Environment, 2018, 18(1): 40-43.
|
[8] |
中华人民共和国国务院. 生产安全事故报告和调查处理条例[EB/OL].(2007-04-09). https://flk.npc.gov.cn/detail2.html?ZmY4MDgwODE2ZjNlOThiZDAxNmY0MWY1YjI2ODAyM2Y.
|
[9] |
GB/T 23694—2024,风险管理术语[S].
|
|
GB/T 23694-2024,Risk management: vocabulary[S].
|
[10] |
张明广, 蒋军成. 基于层次分析法的重大危险源模糊综合评价[J]. 南京工业大学学报:自然科学版, 2006, 28(2): 31-34.
|
|
ZHANG Mingguang, JIANG Juncheng. Application of analytical hierarchy process in hazard degree assessment of major hazard installations[J]. Journal of Nanjing Tech University:Natural Science Edition, 2006, 28(2): 31-34.
|
[11] |
张梦欣. 安全评价师(第2版)[M]. 北京: 中国劳动社会保障出版社, 2010: 134.
|
[12] |
韩光, 赵春雪, 宋晨. 一种基于最小割集的故障树分析模型研究和算法实现[J]. 中国管理信息化, 2021, 24(20): 180-183.
|
[13] |
陈耀华. 故障树分析法在项目安全风险评估中的应用[J]. 价值工程, 2014, 33(9): 142-144.
|
|
CHEN Yaohua. Application of fault tree analysis in project safety risk assessment[J]. Value Engineering, 2014, 33(9): 142-144.
|
[14] |
焦航翀. 事故树分析在基坑支护工程施工预防失稳坍塌中的应用[J]. 市政技术, 2015, 33(2): 188-191.
|
|
JIAO Hangchong. FTA application for collapse prevention in foundation pit protection[J]. Journal of Municipal Technology, 2015, 33(2): 188-191.
|
[15] |
崔政斌, 刘炳安, 周礼庆. 安全生产十大定律与方法[M]. 北京: 化学工业出版社, 2017: 8-10.
|
[16] |
张召冉, 谷宗贺, 张远悦. 基于事故树的高层建筑火灾分析及预防研究[J]. 山西建筑, 2024, 50(7): 188-190.
|
|
ZHANG Zhaoran, GU Zonghe, ZHANG Yuanyue. Analysis and prevention of high-rise building fire based on fault tree analysis[J]. Shanxi Architecture, 2024, 50(7): 188-190.
|
[17] |
郑乐. 高层建筑火灾风险分析及对策研究[J]. 中国安全科学学报, 2009, 19(10):72-76.
|
|
ZHENG Le. Risk analysis of high-rise building fire and its countermeasures[J]. China Safety Science Journal, 2009, 19(10): 72-76.
|
[18] |
王燕, 尹盼盼, 沈梦露. 基于事故树的铁路客运站火灾风险因素分析[J]. 中国安全科学学报, 2019, 29(增1): 44-47.
|
|
WANG Yan, YIN Panpan, SHEN Menglu. Fire risk factors analysis of large railway passenger station based on fault tree analysis[J]. China Safety Science Journal, 2019, 29(S1): 44-47.
doi: 10.16265/j.cnki.issn1003-3033.2019.S1.009
|