Application of multi-stage hydraulic fracturing in the development of Achimov sediments at the Urengoy oil and gas condensate field
https://doi.org/10.31660/0445-0108-2020-2-38-48
Abstract
The development of deep-lying Achimov deposits makes it possible to extract additional volumes of gas and gas condensate in the fields with decreasing production, as well as implement strategies to introduce new methods to increase oil, gas and condensate production. The decrease in well productivity during the development of gas condensate fields requires the use of new methods of intensification of production. The main method for increasing the productivity of Achimov wells is hydraulic fracturing. The choice of hydraulic fracturing technology for low-permeability Achimov deposits is especially important for creating large hydraulic fractures and high permeability, as well as maintaining the filtration characteristics of reservoir rocks. Multi-stage hydraulic fracturing is the most effective method of intensifying gas and gas condensate production in the development of the Achimov deposits.
About the Authors
E. V. PanikarovskiiRussian Federation
Evgeny V. Panikarovskii, Candidate of Engineering, Associate Professor at the Department of Drilling Oil and Gas Wells
Tyumen
V. V. Panikarovskii
Russian Federation
Valentin V. Panikarovskii, Doctor of Engineering, Professor at the Department of Development and Exploitation of Oil and Gas Fields
Tyumen
M. M. Mansurova
Russian Federation
Mashkhura M. Mansurova, Assistant at the Department of Department of Drilling Oil and Gas Wells
Tyumen
M. V. Listak
Russian Federation
Marina V. Listak, Assistant at the Department of Drilling Oil and Gas Wells
Tyumen
References
1. Panikarovskii, E. V., Panikarovskii, V. V., & Kleshchenko, I. I. (2006). Perspektivy ispol'zovaniya fiziko-khimicheskikh metodov uvelicheniya produktivnosti skvazhin. Oilfield Engineering, (3), pp. 20-25. (In Russian).
2. Latypov, A. R., Khajdar, A. M., Vafin, I. I., & Kuznetsov, A. V. (2009). Testing of horizontal well fracturing technologies at the Rosneft-Purneftegaz oilfield conditions. Oil Industry, (5), pp. 58-61. (In Russian).
3. Basarygin, Yu. M., Budnikov, V. F., & Bulatov, A. I. (2004). Issledovanie faktorov i realizatsiya mer dolgovremennoy ekspluatatsii neftyanykh i gazovykh skvazhin. V 6 chastyakh. Chast' 4. Kniga 3. Gidrorazryv plasta. Krasnodar, Prosveshchenie-Yug Publ., 314 p. (In Russian).
4. Basarygin, Yu. M., Budnikov, V. F., & Bulatov, A. I. (2004). Issledovanie faktorov i realizatsiya mer dolgovremennoy ekspluatatsii neftyanykh i gazovykh skvazhin. V 6 chastyakh. Chast' 4. Kniga 4. Gidrorazryv plasta. Krasnodar, Prosveshchenie-Yug Publ., 388p. (In Russian).
5. Meshkov, V. M., & Shubenok, D. S. (2008). Estimation of hydrofracturing efficiency in horizontal wells on the basis of thermohydrodynamic researches. Oil Industry, (7), pp. 110-114. (In Russian).
6. Ushakov, A. S., Strekalov, A. V., & Korolev, M. S. (2010). Obosnovanie pokazateley gidrorazryva plasta dlya gorizontal'nykh skvazhin. Territoriya Neftegaz, (5), pp. 64-67. (In Russian).
7. Economides, M. J., Porcu, M. M., Yang, M., & Martin, A. N. (2010). Fracturing Horizontal Transverse, Horizontal Longitudinal and Vertical Wells: Criteria for Decision. Canadian Unconventional Resources and International Petroleum Conference (19-21 October). Calgary, Alberta, Canada (In English). Available at: https://doi.org/10.2118/137328-MS
8. Verkhovtsev, P. N., Elesin, M. V., & Islamgaliev, R. F. (2014). Opyt provedeniya mnogostadiynogo gidrorazryva plasta v gorizontal'nykh skvazhinakh OAO "RN Nyagan'neftegaz". Nauchno-tekhnicheskiy vestnik OAO "NK "Rosneft'", (2), pp. 19-22. (In Russian).
9. Gritsenko, A. I., Podyuk, V. G., Ter-Sarkisov, P. M., & Shandrygin, A. N. (1997). Metody povysheniya produktivnosti gazokondesatnykh skvazhin. Moscow, Nedra Publ., 364 p. (In Russian).
10. Vyakhirev, R. I., Gritsenko, A. I., & Ter-Sarkisov, R. M. (2002). Development and exploitation of gas fields. Moscow, Nedra Publ., 880 p. (In Russian).
11. Panikarovskii, E. V., & Panikarovskii, V. V. (2012). Vskrytie slozhnopostroennykh kollektorov. Tyumen, Tyumen State Oil and Gas University Publ., 126 p. (In Russian).
12. Panikarovskii, V. V., Panikarovskii, E. V., & Kleshchenko, I. I. (2006). Petrofizicheskie issledovaniya porod-kollektorov s tsel'yu povysheniya produktivnosti skvazhin. Obz. Inf. Razrabotka i ekspluatatsiya gazovykh i gazokondensatnykh mestorozhdeniy. Moscow, IRTS Gazprom LLC Publ., 100 p. (In Russian).
13. Zakirov, N. N., & Kleshchenko I. I. (2018). K voprosu primeneniya geologo-tekhnicheskikh meropriyatiy dlya stabilizatsii proektnogo urovnya dobychi nefti. Ekologicheskie problemy neftedobychi - 2018: materialy VII mezhdunarodnoy konferentsii s elementami nauchnoy shkoly dlya molodezhi (December, 21-23, 2018). Ufa, pp. 19-20. (In Russian).
14. Panikarovskii, V. V., & Panikarovskii, E. V. (2016). Construction of subhorizontal wells in the Achimov deposits. Oil and Gas Studies, (3), pp. 101-106. (In Russian). DOI: 10.31660/04450108-2016-3-101-106
15. Borodkin, V. N., Kurchikov, A. R., & Khramtsova, A. V. (2013). Litologicheskaya kharakteristika porod-kollektrov i fiziko-khimicheskiy sostav flyuidovykh sistem achimovskoy tolshchi severa Zapadnoy Sibiri. Tyumen, Tyumen State Oil and Gas University Publ., 80 p. (In Russian).
16. Panikarovskii, V. V., Panikarovskii, E. V., & Sohoshko, S. K. (2015). Use of formation hydraulic fracturing for oil recovery enhancement. Oil and Gas Studies, (4), pp. 76-80. (In Russian). DOI: 10.31660/0445-0108-2015-4-76-80
Review
For citations:
Panikarovskii E.V., Panikarovskii V.V., Mansurova M.M., Listak M.V. Application of multi-stage hydraulic fracturing in the development of Achimov sediments at the Urengoy oil and gas condensate field. Oil and Gas Studies. 2020;(2):38-48. (In Russ.) https://doi.org/10.31660/0445-0108-2020-2-38-48