[1]
Wang tao. The reliability analysis of the net of city gas pipe [J]. Journal of oil and gas storage and transportation, 2003, 22(3): 15-18.
Google Scholar
[2]
TSG D7004-2010, The rules of the inspection of pressure pipeline on a regular basis – the utility of pipe [S].
Google Scholar
[3]
Zhao jianping, etc. The risk assessment method of liquefied gas buried pressure pipeline [J]. Journal of Nanjing university of technology, 2004, 26(2): 18-23.
Google Scholar
[4]
CJJ 51-2006, Urban safety technical the rules of operation, maintenance and repair safety technical regulations on urban fuel gas facilities[S].
Google Scholar
[5]
GB 50028-2006, The design specifications of urban gas[S].
Google Scholar
[6]
CJJ 33-2005, The specification of construction and acceptance on urban gas pipeline engineering[S].
Google Scholar
[7]
CJJ/T 153-2010, Urban gas mark standard [S].
Google Scholar
[8]
W. Ken U Muhlbauer. Pipeline Risk Management Manual [M]. Gulf Publishing Company, (2004).
Google Scholar
[9]
Wang xiaomei. The risk assessment of city buried gas pipeline (a master's degree thesis) [D]. Nanjing: Nanjing university of technology, (2006).
Google Scholar
[10]
Wang Wenhe etc. Based on the risk of city buried gas pipeline safety evaluation model and its application [J]. Journal of safety science and technology of China, 2010, 6(3): 163-166.
Google Scholar
[11]
Zhao Xinhao etc. The research of the method of the risk hierarchy of oil and gas pipeline third-party damage[J]. Journal of oil industry technical supervision, 2011(4): 5-9.
Google Scholar
[12]
Yu Shurong etc. The determination of pipeline risk weighting factors based on the analytic hierarchy process[J]. Journal of natural gas industry, 2005, 25(6): 132-133.
Google Scholar
[13]
Li Hongji. Fuzzy mathematics foundation and practical algorithm [M]. Beijing: science press, 2005: 83-88.
Google Scholar
[14]
Ma Yuedong. The accident analysis and prevention of gas pipeline in the city of Harbin[J]. Journal of industrial safety and dustproof, 1999(5): 1-4.
Google Scholar