Environmental risk analysis of accident on main and technological oil pipelines
https://doi.org/10.31660/0445-0108-2020-2-107-119
Abstract
Article is devoted to questions of environmental risk analysis of accident on main and technological oil pipelines. The relevance of a subject consists in standard introduction of requirements about risk assessment to many fields of activity, related to danger or result indeterminacy. Thus, risk assessment requirements are stated in all international standards on the management systems, starting with ISO 9001. The aim of the article is consideration of a contingency situation on the oil pipeline in respect of its long-term environmental impacts. A research problem is development of conceptual model of man-caused accident impact on the ecological environment. During the solution of an objective research techniques were chosen, and situational models of risk estimation are developed. Based on the predesigned results, it is possible to draw a conclusion on the high level of environmental risk which isn't considered in the ecological management systems of the oil companies.
About the Authors
I. N. KvasovRussian Federation
Igor N. Kvasov, Candidate of Economic, Dean of Faculty of Transport, Oil and Gas, Professor at the Department of Oil and Gas Busyness, Standardization and Metrology
Omsk
E. V. Shendaleva
Russian Federation
Elena V. Shendaleva, Candidate of Engineering, Associate Professor at the Department of Oil and Gas Busyness, Standardization and Metrology
Omsk
O. V. Shtengauer
Russian Federation
Olga V. Shtengauer, Engineer-metrologist, Omsk engine-building association of P. I. Baranov branch of the Salute gas turbine engineering research and production center
Omsk
M. A. Aleksandrov
Russian Federation
Michael A. Aleksandrov, Candidate of Engineering, Associate Professor at the Department of Transportation of Hydrocarbon Resources
Tyumen
References
1. Knight, K. (2003). Chairman ISO/TMB/WG on Risk Management Terminology. Risk Management: an integral component of corporate governance and good management – ISO Bulletin, pp. 21-24. (In English).
2. Bulgakova, V. V., Gabdulkhakov, R. R., & Kadyrova, G. A. (2017). Obzor metodov otsenki riska opasnykh proizvodstvennykh ob''ektov. Novaya nauka: problemy i perspektivy, 1(2), pp. 57-61. (In Russian).
3. Lebedev, M. P., Bol'shakov, A. M., & Zakharova, M. I. (2018). Metodicheskoe posobie po otsenke riska avariy opasnykh proizvodstvennykh ob''ektov neftegazovoy otrasli v usloviyakh Severa. Yakutsk, M. K. Ammosov North-Eastern Federal University Publ., 28 p. (In Russian).
4. Efremov, I. V., & Rakhimova, N. N. (2016). Tekhnogennye sistemy i ekologicheskiy risk. Orenburg, Orenburg State University Publ., 171 p. (In Russian).
5. Adams, A. (1992). The UK experience in offshore pipeline operations. Pipes & pipelines international, 37(2), pp. 9-14. (In English). Available at: http://pascal-francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=5120080
6. Jaeger, C. C., Renn, O., Rosa E. A. & Webler, T. (2001). Risk, Uncertainty, and Rational Action. 1 st edition. London, Taylor & Francis, 320 p. (In English).
7. Langseth, H., & Portinale, L. (2007). Bayesian networks in reliability. Relianility Engineering & System Safety, 92(1), pp. 92-108. (In English). DOI: 10.1016/j.ress.2005.11.037
8. Røed, W., Mosleh, A., Vinnem, J. E., & Aven, T. (2009). On the use of the hybrid causal logic method in offshore risk analysis. Relianility Engineering & System Safety, 94(2), pp. 445-455. (In English). DOI: 10.1016/j.ress.2008.04.003
9. Khokhlyavin, S. A. (2007). Menedzhment riska: standarty Avstrii, Velikobritanii i Avstralii - predtecha budushchego standarta ISO 31000. Mir standartov, (2(13)), pp. 33-38. (In Russian).
10. Elizar'ev, A. N. (2007). Otsenka antropogennogo vozdeystviya na gidroekologicheskiy rezhim vodnykh ob''ektov (na primere r. Beloy): Avtoref. diss. kand. geogr. nauk. Ufa, Ufa State Aviation Technical University Publ., 25 p. (In Russian).
11. Gabdulkhakov, R. R., Yagudin, R. I., Bakhtiyarov, A. M., Elizareva, E. N., & Marvanov, R. V. (2017). Benchmarking for up-to-date risk assessment methods for safety assurance. Bulletin of scientific research results, (1-2(22-23)), pp. 5-15. (In Russian).
12. Kolodkin, V. M., Murin, A. V., Petrov, A. K., & Gorskiy, V. G. (2001). Kolichestvennaya otsenka riska khimicheskikh avariy. Izhevsk, Udmurt State University Publ., 228 p. (In Russian).
13. Tynybekov, A. K., & Alisherov, A. (2016). Environmental risks and ecological safety. The Herald of Kyrgyz State University of Construction, Transport and Architecture named after N. Isanov, (4(54)), pp. 184-191. (In Russian).
14. Kolesnikov, E. Yu. (2010). K voprosu o raschete i normirovanii pozharnykh riskov. Issues of Risk Analysis, 7(3), pp. 48-79. (In Russian).
15. Varlamov, D. P., & Steklov, O. I. (2013). Upravlenie riskami ekspluatatsii lineynoy chasti magistral'nykh gazoprovodov, podverzhennoy korrozionnomu rastreskivaniyu pod napryazheniem. Quality Management in Oil and Gas Industry, (3), pp. 38-44. (In Russian).
16. Ovsienko, S. N., Zatsepa, S. N., & Ivchenko, A. A. (2005). Modelirovanie razlivov nefti i otsenka riska vozdeystviya na okruzhayushchuyu sredu. SOI Proceedings, (209), pp. 248-255. (In Russian).
17. Zatsepa, S. N., Ivchenko, A. A., & Ovsienko, S. N. (2009) On parameterization of oil spreading dynamics on horizontal porous surface, SOI Proceedings, (212), рр. 218-225. (In Russian).
18. Gilmundinov, V. M., Kazantseva, L. K., Tagayeva, T. O., & Kugayevskaya, K. S. (2013). Environmental Pollution and Population Health in Russian Regions. Region: Ekonomika i Sotsiologiya, (1), рр. 209-228. (In Russian).
19. Kurakina, N. I., & Kuz'mina A. D. (2018). Voprosy otsenki ekologicheskikh riskov v YANAO. Nauka nastoyashchego i budushchego, 1, pp. 354-357. (In Russian).
20. Konovalova, N. V. (2017). Prostranstvennoe raspredelenie ekologicheskogo riska razvitiya neblagopriyatnykh situatsiy arkticheskikh territoriy. Sovershenstvovanie metodologii poznaniya v tselyakh razvitiya nauki. Ufa, 2017, pp. 104-108. (In Russian).
21. Shtengauer, O. V., & Shendaleva, E. V. (2015). Otsenka ekologicheskikh riskov pri transportirovke, khranenii nefti i nefteproduktov. Standartizatsiya, metrologiya i upravlenie kachestvom. Omsk, Omsk State Technical University Publ., pp. 273-277. (In Russian).
22. Zanin, A. V., Mil'ke, A. A., & Kvasov, I. N. (2017). Otsenka riska truboprovodnogo transporta uglevodorodov s morskikh neftedobyvayushchikh platform na territorii arkticheskogo shel'fa. Neft' i gaz Zapadnoy Sibiri. Tom 2. Tyumen, pp. 139-142. (In Russian).
23. Tynybekov, A. K. (2013). Evaluation of Natural and Environmental Risk. Civil Security Technology, 10(4), рр. 72-77. (In Russian).
Review
For citations:
Kvasov I.N., Shendaleva E.V., Shtengauer O.V., Aleksandrov M.A. Environmental risk analysis of accident on main and technological oil pipelines. Oil and Gas Studies. 2020;(2):107-119. (In Russ.) https://doi.org/10.31660/0445-0108-2020-2-107-119