[1]章博, 王志刚, 王彦富.高硫炼油装置硫化氢泄漏场景集定量分析[J].中国安全生产科学技术, 2015, 11(10):73-78
[2]Zhang Bo, Wang Zhigang, Wang Yanfu.Quantitative analysis of hydrogen sulfide leakage scene in high sulfur refining unit[J].China safety production science and technology, 2015, 11(10):73-78
[3]Mohtadi-Bonab M A, Eskandari M.A focus on different factors affecting hydrogen induced cracking in oil and natural gas pipeline steel[J].Engineering Failure Analysis, 2017, 79:351-360
[4]毛小虎, 郝永梅, 邢志祥, 等.城市天然气管道动态泄漏扩散特性模拟分析[J].油气储运, 2014, 33(04):374-379
[5]Mao Xiaohu, Hao Yongmei, Xing Zhixiang, et al.Simulation and analysis of dynamic leakage and diffusion characteristics of urban natural gas pipeline[J].oil and gas storage and transportation, 2014, 33(04):374-379
[6]邓海发, 陈国明, 朱渊, 等.海洋钻井平台井喷硫化氢扩散规律研究[J].安全与环境学报, 2010, 10(05):177-180
[7]Deng Haifa, Chen Guoming, Zhu Yuan, et al.Study on the diffusion of hydrogen sulfide in offshore drilling platform[J].Journal of safety and environment, 2010, 10(05):177-180
[8]蒋军成, 潘旭海.描述重气泄漏扩散过程的新型模型[J].南京工业大学学报(自然科学版), 2002,, (1):41-46
[9]Jiang Juncheng, Pan Xuhai.A new model [J]. Journal of Nanjing University of Technology described the process of diffusion of heavy gas (NATURAL SCIENCE EDITION), 2002, (1): 41-46.
[10]Wang Y, Zhang R, Zhang Z, et al.Leakage risk quantitative calculation model and its application for anaerobic reactor[J]. Journal of the Taiwan Institute of Chemical Engineers, 2017.
[11]Liu D, Wei J.Modelling and simulation of continuous dense gas leakage for emergency response application[J]. Journal of Loss Prevention in the Process Industries, 2017, 48:14-20.
[12]邱永年, 胡利明.凝析油炼制场所硫化氢事故爆炸风险分析[J].石油化工安全环保技术, 2014, 30(01):42-46
[13]Qiu Yongnian, Hu Liming.Condensate oil refining hydrogen sulfide explosion accident risk analysis places[J].petroleum and chemical safety and environmental protection technology, 2014, 30(01):42-46
[14]Pandya N, Gabas N, Marsden E.Sensitivity analysis of Phast’s atmospheric dispersion model for three toxic materials (nitric oxide,ammonia,chlorine)[J].Journal of Loss Prevention in the Process Industries, 2012, 25(1):20-32
[15]雷达, 张建文, 冯文兴.含硫化氢天然气泄漏事故的硫化氢中毒灾害分析[J].安全与环境学报, 2012, (3):224-228
[16]Lei Da, Zhang Jianwen, Feng Wenxing.Analysis of the hazards of hydrogen sulfide poisoning with hydrogen sulfide natural gas leakage accidents [J]. safety and environment, 2012, (3): 224-228.
[17]敬加强, 李小明, 江漩涛, 等.不同硫化氢浓度下的天然气管道泄漏扩散数值模拟[J].当代化工, 2015, (11):2710-2713
[18]Jing Jiaqiang, Li Xiaoming, Jiang Xuan Tao, et al.Natural gas pipeline under different concentration of hydrogen sulfide leakage diffusion numerical simulation [J]. contemporary chemical industry, 2015, (11): 2710-2713.
[19]AQ/T 3046—2013, 化工企业定量风险评价导则.
[20]AQ/T3046-2013, Guidelines for quantitative risk assessment of chemical enterprises.
[21]高少华, 邹兵, 严龙, 等.含硫天然气净化厂硫化氢泄漏分析及对策[J].中国安全生产科学技术, 2012, (2):174-179.
[22]Gao Shaohua, Zou Bing, Yan long, et al.Analysis and Countermeasures of hydrogen sulfide leakage in sulfur containing natural gas purification plant [J]. China safety production science and technology, 2012, (2): 174-179.
[23]API Publ4628.A Guidance Manual For Modeling Hypothetical Accidental Releases to the Atmosphere[S].
[24]王龙, 马贵阳.天然气管道泄漏后硫化氢和甲烷危险区域分析[J].当代化工, 2015, (4):760-762, 765.
[25]Wang Long, Ma Guiyang.Analysis of the hazardous area of hydrogen sulfide and methane after leakage of natural gas pipeline [J]. Contemporary chemical industry, 2015, (4): 760-762765.
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