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A comprehensive analysis of conditions and features of oil-and-gas content within the Akhlovskaya structural zone (the North Caucasus)

https://doi.org/10.31660/0445-0108-2021-2-25-38

Abstract

At the present stage, the development of the oil industry of the Russian Federation is impossible without replenishing the resource base, and therefore an urgent task is to analyze and assess the conditions and characteristics of oil-andgas content in unexplored regions.

Purpose of the study is an analysis and an assessment of reservoir properties of rocks of the Aptian horizon Р1+2- К2 within the Akhlovskaya structure.

We analyzed the graphs of the distribution of indicators in wells R-212 and R-213 in the Akhlovsky area and concluded that the reservoir is heterogeneous, and there are interlayers of mudstones with other reservoir properties and geophysical characteristics. The following pairs of parameters (porosity coefficient and oil-saturated thickness of rocks, rock resistivity and porosity coefficient, rock resistivity and oil-saturated thickness of rocks) have a significant positive correlation. Having studied the distribution of indicators in the Akhlovsky area for wells R-212 and R-213 along one horizon, we concluded that these indicators differ very slightly, which indicates the homogeneity of the reservoir properties. Qualitative indicators Qualitative indicators don't change. Thus, we can expect similar indicators within the entire area of the explored layer Р1+2- К2 in the territory of the Akhlovsky area.

About the Authors

I. I. Bosikov
North Caucasian Institute of Mining and Metallurgy (State Technological University)
Russian Federation

Igor I. Bosikov, Candidate of Engineering, Associate Professor at the Department of Oil and Gas Business

Vladikavkaz



A. I. Mazko
North Caucasian Institute of Mining and Metallurgy (State Technological University)
Russian Federation

Alexander I. Mazko, Candidate of Engineering, Associate Professor at the Department of Oil and Gas Business

Vladikavkaz



A. V. Mayer
Yugra State University
Russian Federation

Andrey V. Mayer, Candidate of Engineering, Director of the Higher Oil School of the Institute of Oil and Gas

Khanty-Mansiysk



O. V. Gagarina
Yugra State University
Russian Federation

Oksana V. Gagarina, Lecturer at the Higher Oil School of the Institute of Oil and Gas

Khanty-Mansiysk



References

1. Martynov, V. N. (2004). Formirovanie neftyanoy i gazovoy - krizis pereproizvodstva. Neft' Rossii, (8), pp. 20-24. (In Russian).

2. Shpurov, I. V., Pisarnitskiy, A. D., Purtova, I. P., & Varichenko, A. I. (2012). Trudnoizvlekaemye zapasy nefti Rossiyskoy Federatsii. Struktura, sostoyanie, perspektivy osvoeniya. Tyumen, ZapSibNIIGG Publ., 254 p. (In Russian).

3. Kostenevich, K. A., Belous, O. I., & Slyunkina, S. A. (2017). Vliyanie usloviy formirovaniya i postsedimentatsionnykh protsessov preobrazovaniya otlozheniy na strukturu pustotnogo prostranstva i fil'tratsionno-emkostnye svoystva porod-kollektorov produktivnogo gorizonta tyumenskoy svity Krasnoleninskogo svoda. Sovremennye problemy sedimentologii v neftegazovom inzhiniringe: trudy III Vserossiyskogo nauchno-prakticheskogo sedimentologicheskogo soveshchaniya, April, 10-12, 2017. Tomsk, TSPPS ND Publ., pp. 84-90. (In Russian).

4. Bronskova, E. I. (2016). Comprehensive analysis of April field geological structure to provide effective additional exploration and development of Tyumen suite deposits. Geology, Geophysics and Development of Oil and Gas Fields, (8), pp. 36-44. (In Russian).

5. Klubkov, S. V. (2015). Stimulirovanie razrabotki TRIZ pomozhet podderzhat' uroven' dobychi nefti v Rossii. Oil & Gas Journal Russia, (6), pp. 6-11. (In Russian).

6. Khuzin, R. R. (2012). Geotekhnologicheskie osnovy osvoeniya trudnoizvlekaemykh zapasov melkikh slozhnopostroennykh mestorozhdeniy nefti. Samara, Neft'. Gaz. Novatsii Publ., 384 p. (In Russian).

7. Medvedev, N. Ya. (1997). Geotekhnologicheskie osnovy razrabotki zalezhey s trudnoizvlekaemymi zapasami nefti, Moscow, VNIIOENG Publ., 336 p. (In Russian).

8. Ghorbani, Y., Franzidis, J.-P., & Petersen, J. (2016). Heap Leaching Technology - Current State, Innovations, and Future Directions: A review. Mineral Processing and Extractive Metallurgy Review, 37(2), pp. 73-119. (In English). DOI: 10.1080/08827508.2015.1115990

9. Kovalenko, I. V., & Sokhoshko, S. K. (2018). Modeling of the oil rims development of multi-zone oil rim reservoir. Oil and Gas Studies, (3), pp. 50-54. (In Russian). DOI: 10.31660/0445-0108-2018-3-50-54

10. Podnebesnykh, A. V. (2017). Perspectives of developing bitumen seeps of the Baikal rift valley. Oil and Gas Studies, (1), pp. 38-42. (In Russian). DOI: 10.31660/0445-0108-2017-1-38-42

11. Frolov, V. T. (2004). Nauka geologiya: filosofskiy analiz. Moscow, Moscow State University Publ., 128 p. (In Russian).

12. Bembel, R. M., Megeria, V. M., & Bembel, S. R. (2006). HC reservoirs exploration on the basis of geosolitonic conception of the Earth's degassing. Oil and gas geology, (2), pp. 2-7. (In Russian).

13. De Oliveira, D. M., Sobral, L. G. S., Olson, G. J., & Olson, S. B. (2014). Acid leaching ofa copper ore by sulphur-oxidizing microorganisms. Hydrometallurgy, 147-148, pp. 223-227. (In English). DOI: 10.1016/j.hydromet.2014.05.019

14. Sinclair, L., & Thompson, J. (2015). In situ leaching of copper: Challenges and future prospects. Hydrometallurgy, 157, pp. 306-324. (In English). DOI: 10.1016/j.hydromet.2015.08.022

15. Niemann-Delius, Ch., Stoll, R. D., Drebenstedt, C., & Müllensiefen, K. (2009). Der Braunkohlentagebau: Bedeutung, Planung, Betrieb, Technik, Umwelt. Springer-Verlag, Berlin, Heidelberg, 605 p. (In German). DOI: 10.1007/978-3-540-78401-2

16. Panikarovskii, E. V., Panikarovskii, V. V., & Anashkina, A. E. (2019). Vankor oil field development experience. Oil and Gas Studies, (1), рр. 47-51. (In Russian). DOI: 10.31660/0445-0108-2019-1-47-51

17. Bembel, R. M., Sukhov, V. A., & Schetinin, I. A. (2017). Ways of increasing geological efficiency of hydrocarbon fields development in Western Siberia. Oil and Gas Studies, (6), pp. 6-10. (In Russian). DOI: 10.31660/0445-0108-2017-6-6-10

18. Klyuev, R. V., Bosikov, I. I., Gavrina, O. A., & Revazov, V. Ch. (2018). System analysis of power consumption by nonferrous metallurgy enterprises on the basis of rank modeling of individual technocenosis castes. MATEC Web of Conferences, 226, pp. [1-5]. (In English). DOI: 10.1051/matecconf/201822604018

19. Yegorova, E. V., Klyuev, R.V., Bosikov, I. I., & Tsidaev, B. S. (2018). Evaluation of use of effective technologies for increasing sustainable development of natural and technical system of oil and gas complex. Sustainable development of mountain territories, 10(3(37)), pp. 392-403. (In Russian). DOI: 10.21177/1998-4502-2018-10-3-392-403

20. Bosikov, I. I., Klyuev, R. V., & Kelekhsaev, V. B. (2017). Method for determining of the ventilation object transfer function according to normal operation (by the example of mining and processing complex). 2017 International Conference on Industrial Engineering, Applications and Manufacturing (ICIEAM) (May, 16-19, 2017). (In English). Available at: https://doi.org/10.1109/icieam.2017.8076113


Review

For citations:


Bosikov I.I., Mazko A.I., Mayer A.V., Gagarina O.V. A comprehensive analysis of conditions and features of oil-and-gas content within the Akhlovskaya structural zone (the North Caucasus). Oil and Gas Studies. 2021;(2):25-38. (In Russ.) https://doi.org/10.31660/0445-0108-2021-2-25-38

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ISSN 0445-0108 (Print)