Preview

Oil and Gas Studies

Advanced search

Analysis of the results of geodynamic monitoring at the Kogalym oil field of LUKOIL-AIK LLC

https://doi.org/10.31660/0445-0108-2019-6-31-41

Abstract

The article gives valuable information on geodynamic monitoring. We created a geodynamical polygon to ensure the industrial safety of oil and gas production facilities. It was created on the Kogalym oil field for multiple repeated observations of recent deformation processes. Analysis and interpretation of the results of geodynamical monitoring: satellite observations, exploitation parameters of field development provided an opportunity to identify that an anthropogenic factor is one of the conditions for the formation of recent deformations of the Earth's surface.

About the Authors

Yu. V. Vasilev
West Siberian Division of Trofimuk Institute of Petroleum-Gas Geology and Geophysics of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Yuri V. Vasilev, Candidate of Geology and Mineralogy, Senior Researcher

Tyumen



D. A. Misyurev
West Siberian Division of Trofimuk Institute of Petroleum-Gas Geology and Geophysics of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Denis A. Misyurev, Junior Researcher

Tyumen



D. P. Inozemtsev
West Siberian Division of Trofimuk Institute of Petroleum-Gas Geology and Geophysics of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Dmitry P. Inozemtsev, Leading Engineer

Tyumen



P. I. Bezhan
LUKOIL-AIK LLC
Russian Federation

Pavel I. Bezhan, Chief Surveyor

Kogalym



References

1. Andreeva, F. V., Borisenkov, B. G., Buzyatov, V. G., & Sytnik, V. S. (1988). Geodezicheskoe obespechenie zhilishchno-grazhdanskogo i promyshlennogo stroitel'stva. Moscow, Nedra Publ., 270 p. (In Russian).

2. Kuzmin, Yu. O., & Zhukov, V. S. (2004). Modern geodynamics and variations of rocks' physical properties. Moscow, Moscow State University Publishers, 262 p. (In Russian).

3. Sidorov, V. A. (2000). Prirodno-tekhnogennye yavleniya, indutsirovannye razrabotkoy mestorozhdeniy nefti i gaza. Fundamental'nyy bazis novykh tekhnologiy neftyanoy i gazovoy promyshlennosti. Moscow, Nauka Publ., pp. 334-344. (In Russian).

4. Sidorov, V. A., & Kuzmin Yu. O. (1989). Recent crustal movements in sedimentary basins. Moscow, 183 p. (In Russian).

5. Petukhov, I. M., & Batugina, I. M. (1999). Geodinamika nedr. 2nd edition, revised and expanded. Moscow, MGGU Publ., 287 p. (In Russian).

6. Sidorov, V. A., Kuzmin, Yu. O., & Khitrov, A. M. (2000). Kontseptsiya "Geodinamicheskaya bezopasnost' osvoeniya uglevodorodnogo potentsiala nedr Rossii". Moscow, IGRGI Publ., 56 p. (In Russian).

7. Umrikhin, I. D., Dneprovskaya, N. I., Entov, V. M., Kurenkov, O. V., Buzinov, S. N., Malakhova, T. A., & Liberman, G. I. (1981). Opredelenie parametrov plastov po dannym nablyudeniy za smeshcheniem poverkhnosti zemli. Oil Industry, (10), pp. 29-32. (In Russian).

8. Khayn, V. E, & Lomize, M. G. (2005). Geotektonika s osnovami geodinamiki. Moscow, Knizhnyy dom "Universitet" Publ., 560 p. (In Russian).

9. Brayt, P. I., & Medvedskiy, E. N. (1979). Izmerenie osadok i deformatsiy geodezicheskimi metodami. Moscow, Geoizdat, 200 p. (In Russian).

10. Kashnikov, Yu. A., & Ashikhmin, S. G. (2007). Rock mechanics in petroleum industry. Moscow, Nedra Publ., 466 p. (In Russian).

11. Maznitskiy, A. S. (2002). Geodezicheskiy monitoring i prognozirovanie tekhnogennoy geodinamiki na mestorozhdeniyakh nefti i gaza. Avtoref. diss. dokt. tekhn. nauk. Kiev, 22 p. (In Russian).

12. Instruktsiya po razvitiyu s''emochnogo obosnovaniya i s''emke situatsii i rel'efa s primeneniem global'nykh navigatsionnykh sputnikovykh sistem. (2002). GKINP (ONTA)-02-262-02. FSGiK RF TSNIIGAiK. Moscow. (In Russian).

13. Pravila zakrepleniya tsentrov punktov sputnikovoy geodezicheskoy seti (1993). "Kartgeo-tsentr" "Geoizdat", Moscow. (In Russian).

14. Antonovich, K. M. (2005). Ispol'zovanie sputnikovykh radionavigatsionnykh sistem v geodezii. Chast' 1. Novosibirsk, SGGA Publ., 333 p. (In Russian).

15. Antonovich, K. M. (2007). Ispol'zovanie sputnikovykh radionavigatsionnykh sistem v geodezii. Avtoref. Diss. doct. tekhn. nauk. Novosibirsk, 66 p. (In Russian).

16. Vasilyev, Yu., & Radchenko, A. (2017). Analysis of geodynamic monitoring results for Novomolodezhnoe field. Mine surveying and subsurface use, (1(87)), pp.38-41. (In Russian).

17. Vasiliev, Yu. V. (2017). Mining and geological substantiation for enable the creation of geodynamic polygons in Kalchinskoye, Ust-Tegusskoye, Tyamkinskoye, Yuzhno-Petegskoye, Radonezhskoye, Protozanovskoye fields. Oil and Gas Studies, (1), pp. 23-31. (In Russian). DOI: 10.31660/0445-0108-2017-1-23-31

18. Vasil'ev, Yu. V., Plavnik, A. G., & Radchenko, A. V. (2017). The technogenic impact of hydrocarbon production on recent geodynamics of Samotlor oil field. Mine Surveying Bulletin, (4(119)), pp. 43-51. (In Russian).

19. Vasilev, Yu. V., Misyurev, D. A., & Filatov, A. V. (2018). Anthropogenic influence of the Komsomolsk oil and gas condensate field on modern deformation processes. Oil and Gas Studies, (2(128)), pp.11-20. (In Russian). DOI: 10.31660/0445-0108-2018-2-11-20

20. Vasilyev, Yu. V., Inozemtsev, D. P., Misyurev, D. A., Dolganov, I. M., & Filatov, A. V. (2018). Analysis and interpretation of mine surveying-geodetic measurements on the geodynamic polygon of Gubkinskiy. Mine Surveying Bulletin, (1(122)), pp. 58-67. (In Russian).


Review

For citations:


Vasilev Yu.V., Misyurev D.A., Inozemtsev D.P., Bezhan P.I. Analysis of the results of geodynamic monitoring at the Kogalym oil field of LUKOIL-AIK LLC. Oil and Gas Studies. 2019;(6):31-41. (In Russ.) https://doi.org/10.31660/0445-0108-2019-6-31-41

Views: 661


ISSN 0445-0108 (Print)