RANKING OF MAJOR HAZARDS SUITABLE FOR THE GOVERNMENT SUPERVISION

Authors

  • Hao Yu School of Emergency Management, Henan Polytechnic University, Jiaozuo, Henan, China
  • Sun Chaolun College of Safety and Engineering, Henan Polytechnic University, Jiaozuo, Henan, China

DOI:

https://doi.org/10.14311/CEJ.2018.03.0032

Keywords:

Production site, Major hazard, Sensitivity, Risk classification

Abstract

Based on the basic theory of risk, we add the sensitivity factor in the process of design the risk classification model of the major hazard sources, and establish the quantitative classification model and the qualitative classification three-dimensional model of the major hazard source. According to the risk status of the major hazard sources in the production site, the system of risk evaluation index is determined from the three dimensions of probability, severity and sensitivity. (AHP) was used to calculate the weights of each index, and established the mathematical model of risk classification of major hazard sources in production sites. Besides, there are more than 30 enterprises in Taiwan that were selected for empirical research. The empirical research shows that the risk classification model of the major hazard source which is established in this paper has good practicability and convenience. It is suitable for the government safety supervision department to carry out the hierarchical supervision work, and can systematically and conveniently realize the government's scientific safety supervision and the effective safety management of the enterprise.

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References

WU Yan. “Research on method of major hazard assessment on production operations area”. Journal of Safety Science and Technology, vol. 8, pp. 158-164, 2012.

SHAO Hui, YANG Li-dan, LI Jing. “The Study on Major Hazards Ranking for Chemical Industrial Park”. Industrial Safety and Environmental Protection, vol. 37, pp.12-16,2011.

HAO Yuan-fei, ZHANG Jian. “Analysis the risk assessment techniques of dangerous chemicals Major hazard in China”. Journal of Safety Science and Technology, vol. 8, pp.52-56,2012.

《Notice on Regulating the Supervision and Administration of Major Dangerous Sources》(Safety Supervision Coordinator [2005] No. 62.

LIU Jingo Jian-Ming, GUAN Lei, YU Li Jian. “Probe into the Grading Method for Major Hazard Installation”. China Safety Science Journal, vol. 18, pp.162-165,2008.

Wu Zongzhi. “Discussion on Control of Major Hazards and of Major Accident Potential”. China Safety Science Journal, vol. 13, pp.20-23,2003.

SUN Jin-Feng, CHEN Goodhue. “Research on pre-warning technology for accidents risk of major hazards “.Journal of saftey science and technology, vol. 9, pp.44-46,2010.

H. Taubenböck, J. Post, A. Roth,E. “Taltar conceptual vulnerability and risk framework as outline to identify capabilities of remote sensing”. Natural Hazards and Earth System Sciences, vol. 8, pp.409-420,2008.

Mao Xiaojie et al. “Research on Safety Supervision of Major Hazardous Source in Chemical Industry Park”. Shenyang: Northeastern University, 6.2008.

LUO Ying-quint, et al. “Statistical analysis on dust explosion accidents occurring in China during 2009-2013”. Journal of Safety Science and Technology, vol. 11, pp.186-190,2012.

Luo Yun.. “Introduction to safety science”. Beijing: China quality press, 7.2013.

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Published

2018-10-31

How to Cite

Yu, H., & Chaolun, S. (2018). RANKING OF MAJOR HAZARDS SUITABLE FOR THE GOVERNMENT SUPERVISION. Stavební Obzor - Civil Engineering Journal, 27(3). https://doi.org/10.14311/CEJ.2018.03.0032

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