Statistical analysis of accidents at filling stations
https://doi.org/10.22227/0869-7493.2022.31.06.91-98
Abstract
Introduction. The number of accidents at gas stations has increased lately. Gas stations provide maintenance and fueling services. Gas stations are dangerous because they store fire hazardous automobile fuel, as well as equipment under pressure that may contain explosive gases. For safety reasons, it is necessary to analyze the causes of these accidents. The purpose of the work is to conduct a statistical analysis of accidents at gas stations to identify patterns of accidents.
Analysis. The article presents the statistics of accidents at service gas stations in the Russian Federation for 10 years from 2012 to 2021. The data is provided by the National Crisis Management Centre of the Ministry of the Russian Federation for Civil Defense, Emergencies and Elimination of Consequences of Natural Disasters (Emercom of Russia). The analysis of accidents at gas stations is broken down by the constituent entities of the Russian Federation. Causes of fires are indicated; ignition sources are considered, locations of fires and facilities are listed. Fires at gas stations were considered taking into account the categorization of objects in accordance with government decree “On Application of a Risk-Oriented Approach to Organization of Certain Types of State Control (Supervision)”.
Conclusion. The statistics, provided and analyzed in the article, can serve as the basis for a scientific research project on the fire safety of gas stations.
About the Authors
G. K. IvakhnyukRussian Federation
Grigory K. IVAKHNYUK, Dr. Sci. (Сhem.), Professor, Professor of the Department of Fire Safety of Technological Proces ses and Productions
Moscow Ave., 149, St. Petersburg, 196105
ID RISC: 521920
Yu. Yu. Osmonov
Russian Federation
Yunus Yu. OSMONOV, Candidate of the Department of Fire Extinguishing and Emergency Rescue Operations
Moscow Ave., 149, St. Petersburg, 196105
References
1. Shishkina A.A. Growth of number of car vehicles as a threat to environmental safety. Izvestiya Tula State University. Technical sciences. 2020; 3:178181. URL: https://elibrary.ru/item.asp?id=42842506 (rus).
2. Terentyev V.V. Road transport safety: problems and solutions. Proceedings of the international symposium “Reliability and quality”. 2017; 1:133135. URL: https://elibrary.ru/item.asp?id=29852209 (rus).
3. Lei V.A. Safety conditions at gas stations. Modern Science. 2021; 22:372375. URL: https://elibrary.ru/item.asp?id=44789463 (rus).
4. Aksenov A.A. Problems of ensuring fire safety at automobile petrol station. Problems of Risk Management in the Technosphere. 2021; 1(57):2126. URL: https://elibrary.ru/item.asp?id=46139277 (rus).
5. Korchagina O.M. Statistics role in management. InnoCentr. 2015; 4(9):3335. URL: https://elibrary.ru/item.asp?id=28843626 (rus).
6. Ovcharov A.O. Revisiting the role of statistical methodology in scientific research. Voprosy Statistiki. 2014; 4:2731. URL: https://voprstat.elpub.ru/jour/article/view/76 (rus).
7. McPherson G. Statistics in scientific investigation: its basis, application, and interpretation. Springer Science & Business Media, 2013; 667. DOI: 10.1007/9781475742909
8. Dowdy S., Wearden S., Chilko D. Statistics for research. John Wiley & Sons, 2011; 634.
9. Dyakonov D.R., Filimonova E.V. The role of statistics in scientific and pedagogical research. Statistical analysis of the socio-economic development of federal districts of the Russian Federation: experience, realities, prospects : materials of the All-Russian scientific and practical conference dedicated to the 10th anniversary of education. Stavropol, 7-8 April 2020. Stavropol, 2020; 291292. URL: https://elibrary.ru/item.asp?id=44354501 (rus).
10. Omidvari M., Mansouri N., Nouri J. A pattern of fire risk assessment and emergency management in educational center laboratories. Safety Science. 2015; 73:3442. DOI: 10.1016/j.ssci.2014.11.003
11. Wang L., Li W., Feng W., Yang R. Fire risk assessment for building operation and maintenance based on BIM technology. Building and Environment. 2021; 205:180188. DOI: 10.1016/j.buildenv.2021.108188
12. Lee S. Quantitative risk assessment of fire & explosion for regasification process of an LNGFSRU. Ocean Engineering. 2020; 197:106115.
13. Chen K., Ye J., Zhang X., Lv Q. Fire and explosion analysis of filling station based on fuzzy mathematics and Bayesian network model. E3S Web of Conferences. 2021; 261:03055. DOI: 10.1051/e3sconf/202126103055
14. Ono R. The challenges of getting a national fire statistic system in Brazil. Fire Science and Technology. 2012; 31(3):7785. DOI: 10.3210/fst.31.77
15. Gulyamova G.M., Aripkhodzhayeva M.B., Nizomova D.O., Rakhmatova D.M. About methods of decrease in fire hazard at gas stations. International Academy Journal Web of Scholar. 2019; 1(1):810. DOI: 10.31435/rsglobal_wos/31012019/6306
16. Gordienko D.M. Fire risk assessment of gas stations and development of ways to reduce : Dissertation of the Candidate of Technical Sciences. Moscow, 2001; 175.
17. Fomin A.V. Problems of application of a riskbased approach to planning control measures for fire safety at gas stations. Scientific and analytical journal “Bulletin of the St. Petersburg University of the State Fire Service of the Ministry of Emergency Situations of Russia”. 2016; 3:3339.
18. Shakhmanov F.F. Risk-oriented method of fire supervision of automobile gas stations : Dissertation of the Candidate of Technical Sciences. SaintPetersburg, 2018; 115.
19. Hampton P. Reducing administrative burdens: effective inspection and enforcement. London, HM Treasury, 2005; 140.
20. Black J. Riskbased regulation: choices, practices and lessons being learnt. Risk and regulatory policy. Improving the governance of risk. Paris, OECD Publishing. 2010.
Review
For citations:
Ivakhnyuk G.K., Osmonov Yu.Yu. Statistical analysis of accidents at filling stations. Pozharovzryvobezopasnost/Fire and Explosion Safety. 2022;31(6):91-98. (In Russ.) https://doi.org/10.22227/0869-7493.2022.31.06.91-98