Conceptual approach, peculiarity and complexity of the oil rim development under condition of abnormal low reservoir pressure and temperature: the case of Chayandinskoye oilfield, Eastern Siberia
https://doi.org/10.7868/S2587739920030040
Abstract
The oil rim reserves development suggests complexity in maintaining the balance of gas and oil withdrawals from the reservoir, choosing the optimal well design and geosteering, justifying well operation conditions, etc. In addition, gas and oil reservoir can be complicated by diagenetic alterations of deposits, blocked structure, abnormal thermobaric conditions. The paper presents the results of conceptual approach to the Botuobinskiy horizon’s oil rim development design at the Chayandinskoye oil and gas condensate field with the presence of the above complications. This experience can be applied to assess the majority of fields in Eastern Siberia.
About the Authors
Sh. NigamatovRussian Federation
Saint-Petersburg
L. Ismagilova
Russian Federation
Saint-Petersburg
S. Andronov
Russian Federation
Saint-Petersburg
A. Markov
Russian Federation
Saint-Petersburg
A. Boshchenko
Russian Federation
V. Lapaev
Russian Federation
A. Belysh
Russian Federation
References
1. Nigamatov Sh.A., Ismagilova L.R., Boshchenko A.N. The prediction of salted zones of botuobinskiy formation sandstone on the example of Chayandinskoye field (East Siberia). PRONEFT’. 2019, vol. 13, no. 3, pp. 35–40. (In Russ.)
2. Burova I.A. The paleogeographycal reconstruction of vendian-lower cambrian carbonate rocks at the west slope of the north part of Nepsko-Botuobin - skaya anteclise. Neftegazovaia geologiia. Teoriia i praktika [Oil and gas geology. Theory and practice]. 2014, no 4. (In Russ.) Available at: http://www.ngtp.ru/ rub/4/42_2014.pdf
3. Kruchkov V.E., Medvedev A.G., Izvekov I.B. Litho-facies and geodynamic condition of vendian deposits genesis of Chayandinskoe field. Vesti gazovoi nauki. 2012, vol. 9, no. 1, pp. 194–201. (In Russ.)
4. Calvin I.A., Moiseev V.A., Butorov V.V. Salt crystallization condition at the pore space of Nepsckiy dome reservoirs. Geologiia nefti i gaza [Oil and gas geology]. 1990, no 6. (In Russ.)
5. Ryzhov A.E., Perunova T.A., Orlov D.M. The structure of pore space at botuobinskiy formation reservoir of Chayandinskoe field. Vesti gazovoi nauki. 2011, vol. 6, no. 1, pp. 162–174. (In Russ.)
6. Vorobyev V.S., Klinovaya Ya.C. The factor of terrigenous reservoir salinization of Verkhnechonskoe field. Gazovaia promyshlennost’ [Gas industry]. 2017, no. 4, pp. 36–42. (In Russ.)
7. Zubarev D.N. Fizicheskaia entsiklopediia [Physical encyclopedia]. Moscow, Sovetskaia entsiklopediia Publ., 1988, pp. 605–704.
8. Troitsky V.M., Sokolov A.F., Istomin V.A., Rassokhin S.G., Van’kov V.P., Mizin A.V., Alemanov A.E. Physical modeling of hydrate formation processes in the regime of natural gas filtration in the pore medium of the Chayandinskoe oil and gas condensate field. Vesti gazovoi nauki. 2015, vol. 24, no. 4, pp. 99–109. (In Russ.)
9. Yaubatyrov R., Babin V., Akmadieva L. Grid Cluster in the Office: High-Performance Computing for Reservoir Management. SPE Annual Technical Conference and Exhibition, 24–26 September, Dallas, Texas, USA, 2018.
Review
For citations:
Nigamatov Sh., Ismagilova L., Andronov S., Markov A., Boshchenko A., Lapaev V., Belysh A. Conceptual approach, peculiarity and complexity of the oil rim development under condition of abnormal low reservoir pressure and temperature: the case of Chayandinskoye oilfield, Eastern Siberia. PROneft. Professionally about Oil. 2020;(3):33-39. (In Russ.) https://doi.org/10.7868/S2587739920030040