Modeling the transition zone of the Cenomanian gas reservoir
https://doi.org/10.31660/0445-0108-2022-6-26-40
Abstract
Low-pressure gas production is one of the most important tasks in gas field development. To estimate the reserves of previously uninvolved reservoirs with low reservoir properties, it is necessary to analyze available geological and geophysical information for the subsequent creation of a three-dimensional geological model. Based on this model, a filtration model will be built, which allow calculating the flow rates of both actually drilled and designed wells for the entire development period. The model is built on the basis of small amount of information content, but the modeling results sufficiently reflect the presence of a zone of poorly saturated part of the Cenomanian gas reservoir, and structural and petrophysical features of the reservoir in the territory. As a result of the conducted research, the low pressure gas reserves at the Yamburgskoye field were calculated. The calculations, which are given in the article, are correct and don't contradict the Regulations on the creation of permanent geological and technological models of oil and gas and oil fields (RD 153-39.0-047-00).
About the Authors
Yu. V. VaganovRussian Federation
Yuriy V. Vaganov, Candidate of Engineering, Leading Researcher at Well Workover Technology and Production Stimulation Laboratory
Tyumen
A. A. Shiryaev
Russian Federation
Artyom A. Shiryaev, Junior Researcher at Well Workover Technology and Production Stimulation Laboratory
Tyumen
V. O. Naumenko
Russian Federation
Vitaliya O. Naumenko, Junior Researcher at Well Workover Technology and Production Stimulation Laboratory
Tyumen
References
1. Poroskun, M. V. (2004). Differentsiatsiya razreza senomanskikh otlozheniy se-vera Zapadnoy Sibiri v svyazi s razvedkoy, podschetom zapasov i razrabotkoy zalezhey uglevodorodov. Diss. … kand. geol.-mineral. nauk. Moscow, 183 p. (In Russian).
2. Ermakov, V. I., Mironova, S. V., & Prokopenko, S. B. (1975). Osobennosti stroeniya senoman-nizhneturonskikh otlozheniy severa Zapadnoy Sibiri. Sbornik VNIIEGAZPROMa, (10). Moscow, pp. 11-20. (In Russian).
3. Vaganov, Yu. V., & Ovchinnikov, V. P. (2021). Technology for the development of Cenomanian gas deposit transition zone. Burenie i neft', (4), рр. 56-60. (In Russian).
4. Dadashova, K. S. (2020). The methods of analysis of factors influence on the efficiency of intensification of oil-gas production. Journal of Mines, Metals & Fuels, 68(9), pp. 293-306. (In English).
5. Eder, L. V., Filimonova, I. V., Provornaya, I. V., & Nemov, V. Yu. (2014). Main problems of innovation development of oil and gas industry in sphere of processing and transportation of hydrocarbons. Burenie i neft', (7-8), pp. 28-32. (In Russian).
6. Baikov, V. A., Murtazin, R. R., Shtinov, V. A., Kiseleva, T. A., Mukhametov, A. F., & Surtaev, V. N. (2018). Performance modelling features of wells in low permeable gas deposits. Oil and Gas Territory, (5), pp. 48-54. (In Russian).
7. Sarancha, A. V., Sarancha, I. S., Mitrofanov, D. A., & Ovezova, S. M. (2015). Technology of production of low-pressure Cenomanian gas. Modern problems of science and education, (1-1), pp. 211-214. (In Russian).
8. Sarancha, A. V., & Sarancha, I. S. (2014). Low-pressure gas of the Cenomanian deposits of the YaNAO. Academic Journal of Western Siberia, 10(3(52)), pp. 146-147. (In Russian).
9. Suprun, Yu. S. (2016). Gas industry in the Russian Federation : problems and development prospects. Belgorod, 97 p. (In Russian).
10. Nikonov, Yu. A. Analiz ekonomicheskoy effektivnosti ispol'zovaniya nizkonapornogo gaza na Medvezh'em neftegazokondensatnom mestorozhdenii: magisterskaya dissertatsiya. Tomsk, 105 p. (In Russian).
11. Kolmakov, A. V. Krotov, P. S. & Kononov, A. V. (2012). Tekhnologii razrabotki senomanskikh zalezhey nizkonapornogo gaza. St. Petersburg, Nedra Publ., 175 p. (In Russian).
12. Ogai, V. A., Antsiferov, B. I., & Akhunov, R. O. (2015). Tekhnologii skvazhinnoy dobychi senomanskogo gaza na zavershayushchem etape razrabotki mestorozhdeniy Zapadnoy Sibiri. Neft' i gaz Zapadnoy Sibiri. Materialy Mezhdunarodnoy nauchno-tekhnicheskoy konferentsii, posvyashchennoy 90-letiyu so dnya rozhdeniya Kosukhina Anatoliya Nikolaevicha. Tom II. Razrabotka i ekspluatatsiya neftyanykh, gazovykh i gazokondensatnykh mestorozhdeniy. Tyumen, Tyumen State Oil and Gas University Publ., pp. 268-272. (In Russian).
13. Kolmakov, A. V. (2012). Issledovanie i razrabotka tekhnologii vyrabotki ostatochnykh zapasov nizkonapornogo gaza senomanskikh zalezhey. Diss. … kand. tekhn. nauk. Tyumen, 170 p. (In Russian).
14. Tsarev, V. V. (2019). K voprosu modelirovaniya srednikh po razmeram zalezhey senomana severa Zapadnoy Sibiri v svyazi s podschetom zapasov gaza. Novye idei v naukakh o Zemle. Materialy XIV Mezhdunarodnoy nauchno-prakticheskoy konferentsii: v 7 tomakh. Tom 5. Stary Oskol, Sergo Ordzhonikidze Russian State University for Geological Prospecting Publ. (branch), pp. 224-227. (In Russian).
15. Keligov, M.-B. S., & Gazdiev, A. I. Stratigraficheskiy analiz Yamburgskogo mestorozhdeniya. Geologiya v razvivayushchemsya mire: sbornik nauchnykh trudov XII Mezhdunarodnoy nauchno-prakticheskoy konferentsii. Perm, pp. 126-128. (In Russian).
16. Vaganov, Yu. V., & Ovchinnikov, V. P. (2020). Cenomanian gas pool transition layer development features. Bulletin of the Association of Drilling Contractors, (3), рр. 24-29. (In Russian).
17. Zakirova, E. S., Zakirova, S. N., Anikeev, D. P., & Alekseeva, Yu. V. (2020). O sposobe dorazrabotki vodoplavayushchey zalezhi s zapasami niz-konapornogo gaza. Neftegaz.RU, (7(103)), рр. 22-28. (In Russian).
Review
For citations:
Vaganov Yu.V., Shiryaev A.A., Naumenko V.O. Modeling the transition zone of the Cenomanian gas reservoir. Oil and Gas Studies. 2022;(6):26-40. (In Russ.) https://doi.org/10.31660/0445-0108-2022-6-26-40