Scientific and technical journal

«Proceedings of Gubkin University»

ISSN 2073-9028

Proceedings of Gubkin University
High-tech wells with bionic profile for development of fields with high viscosity and bituminous oil

UDC: 622.242
DOI: 10.33285/2073-9028-2022-2(307)-117-135

Authors:

EREMIN NIKOLAI A.1,2,
PYATIBRATOV PETR V.2,
SKVORTSOV ANDREY S.2

1 Institute of Oil and Gas Problems RAS, Moscow, Russian Federation
2 Gubkin Russian State University of Oil and Gas (National Research University), Moscow, Russian Federation

Keywords: innovative technology for the development of bituminous deposits, sub-peak oil reservoir, salt dome, bituminous oil, high-viscosity oil, thermal methods for enhanced oil recovery, high-tech bionic wells, creation of hydrodynamic non-isothermal models, steam injection method, SAGD, CSS, SF, in situ combustion

Annotation:

The subject of the research is the rationale for the creation and evaluation of the use of high-tech bionic wells for the development of fields with high-viscosity and bituminous oil. The effectiveness of high-tech wells of a complex profile for the development of bituminous deposits of the sub-peak type is considered. An innovative technology for the development of bituminous fields with salt domes using high-tech bionic wells is proposed.

Bibliography:

1. Ali S.M.F. Life After SAGD – 20 Years Later//S.M.F. Ali. – 7 p.
2. Brissenden S.J. Steaming Uphill: Using J-Wells for CSS at Peace River//Canadian International Petroleum Conference Canadian International Petroleum Conference. – Calgary, Alberta: Petroleum Society of Canada, 2005. – Steaming Uphill.
3. Characterization of Wormhole Growth and Propagation Dynamics During Cold Heavy Oil Production with Sand (CHOPS) Processes by Integrating Rate Transient Analysis and a Pressure-Gradient-Based Sand Failure Criterion/L. Jiang [et al.]//SPE Journal. – 2022. – 20 p.
4. Diller C. Field-/Well-Integrity Issues, Well-Abandonment Planning, and Workover Operations on an Inadequately Abandoned Well: Peace River, Alberta, Case Study. – 2011. – 10 p.
5. Experiment Studies on Horizontal Well – N2 – Viscosity Depressant – Steam Stimulation for Shallow Thin Super-Heavy Oil Reservoirs/R. Sun [et al.]//Day 2 Tue, June 26, 2018 SPE Trinidad and Tobago Section Energy Resources Conference. – Port of Spain, Trinidad and Tobago: SPE, 2018. – P. D021S016R003.
6. Ghasemi M., Whitson C.H. Numerical Investigation and Integrated Optimization of Solvent-SAGD Process//All Days International Petroleum Technology Conference. – Kuala Lumpur, Malaysia: IPTC, 2014. – P. IPTC-18033-MS.
7. History Matching of Frequent Seismic Surveys Using Seismic Onset Times at the Peace River Field, Canada/G. Hetz [et al.]//Day 3 Wed, October 11, 2017 SPE Annual Technical Conference and Exhibition. – San Antonio, Texas, USA: SPE, 2017. – P. D031S044R002.
8. Improvement of CSS Method for Extra-Heavy Oil Recovery in Shallow Reservoirs by Simultaneous Injection of in-Situ Upgrading Catalysts and Solvent: Laboratory Study, Simulation and Field Application/A. Vakhin [et al.]//Day 1 Mon, March 21, 2022 SPE Conference at Oman Petroleum & Energy Show. – Muscat, Oman: SPE, 2022. – Improvement of CSS Method for Extra-Heavy Oil Recovery in Shallow Reservoirs by Simultaneous Injection of in-Situ Upgrading Catalysts and Solvent. – P. D012S034R002.
9. James L.A., Rezaei N., Chatzis I. VAPEX, Warm VAPEX, and Hybrid VAPEX – The State of Enhanced Oil Recovery for In Situ Heavy Oils in Canada. – 9 p.
10. Kalinin S.A., Morozuyk O.A., Kosterin K.S. Experimental Study of Heavy Oil Displacement by Carbon Dioxide on Carbonated Cores//Day 2 Tue, October 27, 2020 SPE Russian Petroleum Technology Conference. – Virtual: SPE, 2020. – P. D023S005R001.
11. Kariznovi M., Nourozieh H., Abedi J. Phase Behavior and Viscosity Measurements of Heavy Crude Oil with Methane and Ethane at High-Temperature Conditions//All Days SPE Western Regional Meeting. – Bakersfield, California, USA: SPE, 2012. – P. SPE-152321-MS.
12. Li X., Liu Z. Produced Gas Reinjection Based Cyclic Solvent Processes for Foamy Oil Reservoirs in the Eastern Orinoco Belt, Venezuela. – 11 p.
13. Lookeren van J. Calculation Methods for Linear and Radial Steam Flow in Oil Reservoirs// Society of Petroleum Engineers Journal. – 1983. – Vol. 23. – № 03. – P. 427–439.
14. Nnabuihe L. Technology Based Formation Damage Control & Mitigation Measures in the SINCOR Zuata Field, Venezuela. – 14 p.
15. Non-traditional Oils: Analysis of Regional Distribution and Reserves of Heavy Oil and Natural Bitumen/T. Yarboboev [et al.]//Bulletin of Science and Practice. – 2020. – Vol. 6. – Non-traditional Oils. – № 7. – P. 226–234.
16. Optimal Operation of Fast-SAGD Process Considering Steam Channeling among Vapor Chambers/S. Jeonga [et al.]. – 1 p.
17. Optimization of Steamflooding Heavy Oil Reservoirs/A. Suhag [et al.]//Day 4 Wed, April 26, 2017 SPE Western Regional Meeting. – Bakersfield, California: SPE, 2017. – P. D041S014R005.
18. Rangriz Shokri A., Babadagli T. An Approach to Model CHOPS (Cold Heavy Oil Production with Sand) and Post-CHOPS Applications//All Days SPE Annual Technical Conference and Exhibition. – San Antonio, Texas, USA: SPE, 2012. – P. SPE-159437-MS.
19. Reservoir Characterization of the Orinoco Heavy Oil Belt: Miocene Oficina Formation, Zuata Field, Eastern Venezuela Basin/R. Kopper [et al.]. – 16 р.
20. Shin H., Polikar M. Review of Reservoir Parameters to Optimize SAGD and Fast-SAGD Operating Conditions//Journal of Canadian Petroleum Technology. – 2007. – Vol. 46. – № 1. – 7 р.
21. Steam Breakthrough Mitigation in Cyclic Steam Stimulation Operations, A East Field, Sultanate of Oman/A. Alwazeer [et al.]//Day 2 Tue, March 27, 2018 SPE EOR Conference at Oil and Gas West Asia. – Muscat, Oman: SPE, 2018. – P. D022S007R002.
22. The Application of Complex Displacement in Cyclic Steam Stimulation CSS & Steam Flooding SF Development in Liaohe Oilfield: A Field Performance Study/J. Liu [et al.]// Day 1 Wed, March 16, 2022 SPE Canadian Energy Technology Conference. – Calgary, Alberta, Canada: SPE, 2022. – The Application of Complex Displacement in Cyclic Steam Stimulation CSS & Steam Flooding SF Development in Liaohe Oilfield. – P. D012S004R002.
23. Burzhe Zh., Surio P., Kombarnu M. Termicheskie metody povysheniya nefteotdachi plastov/ Per. s franc. – M.: Nedra, 1989. – 422 s.
24. Zheltov Yu.P. Razrabotka neftyanyh mestorozhdenij: Uchebnik dlya vuzov. – M.: Nedra, 1986. – 332 s.
25. Zolotuhin A.B., Eremin N.A. Proektirovanie razrabotki neftyanyh mestorozhdenij s primeneniem vnutriplastovogo goreniya//Otdel operativnoj poligrafii MING imeni I.M. Gubkina. – M., 1986. – 73 s.
26. Eremin N.A. Sozdanie sistemy avtomatizirovannogo proektirovaniya razrabotki neftyanyh mestorozhdenij metodom vnutriplastovogo goreniya: Diss. … kand. tekhn. nauk. – M., 1986. – 149 s.
27. Eremin N.A. Sozdanie sistemy avtomatizirovannogo proektirovaniya razrabotki neftyanyh mestorozhdenij metodom vnutriplastovogo goreniya: Avtoref. diss. … kand. tekhn. nauk. – M., 1987. – 22 s.
28. Fizicheskie modeli vytesneniya vyazkoplastichnyh neftej/V.A. Korotenko, S.I. Grachev, N.P. Kushakova, R.R. Sabitov//Neftepromyslovoe delo. – 2014. – № 5. – S. 5–10.
29. Mal’kol’m G. Termicheskie metody dobychi: Kurs lekcij. – Bat, Angliya: Kafedra himicheskih tekhnologij, Universitet g. Bat, 2012.
30. Strekalov A.V., Safarov R.I. Suhoe vnutriplastovoe gorenie kak effektivnyj metod povysheniya nefteotdachi plasta//Akademicheskij zhurnal Zapadnoj Sibiri. – 2014. – T. 10. – № 3 (52). – S. 147–148.
31. O termicheskom povyshenii nefteotdachi pri dobyche vysokovyazkih neftej i bitumov dlya mestorozhdenij Venesuely/A.A. Markano Gonsales, I.K. Basnieva, N.A. Eremin [i dr.]//Aktual’nye problemy nefti i gaza. – 2019. – № 1 (24). – 9 s. – DOI: 10.29222/ipng.2078-5712.2019-24.art9
32. Zamrij A.V., CHernyh S.P., Eremin N.A. Burenie i razrabotka mestorozhdenij so sverh-vyazkoj neft’yu i bitumami//Burenie i neft’. – 2022. – № 4. – S. 47–50.
33. Multilateral-Horizontal Wells Increase Rate and Lower Cost Per Barrel in the Zuata Field, Faja, Venezuela/J.L. Stalder [et al.]. – 9 s.
34. Hamidullin R.D., Saharov V.A., Eremin N.A. Sravnenie tekhnologicheskih pokazatelej raboty mnogozabojnyh skvazhin razlichnoj konfiguracii//Neftyanoe hozyajstvo. – 1999. – № 1. – S. 45–46.
35. Hamidullin R.D., Eremin N.A. Analiz stacionarnogo pritoka nefti k mnogozabojnoj skvazhine v odnorodnom kollektore//Neftepromyslovoe delo. – 1999. – № 2. – S. 12–13.
36. Eremin N.A. Gorizontal’nye tekhnologii//Upravlenie kachestvom v neftegazovom komplekse. – 2009. – № 3. – S. 52–56.
37. Neftegazovyj potencial Anabaro-Lenskogo progiba/F.S. Ul’masvaj, N.A. Eremin, N.A. Shabalin, S.A. Sidorenko//Delovoj zhurnal Neftegaz.RU. – 2017. – № 1 (61). – S. 48–54.
38. Dmitrievskij A.N., Eremin N.A., SHabalin N.A. Arkticheskij potencial. Ocenki neftegazonosnosti shel’fa Sibirskoj platformy//Neft’ Rossii. – 2018. – № 5. – S. 9–13.
39. Savchenko V.I. Kompleksnye geofizicheskie raboty na Anabaro-Hatangskoj sedlovine s cel’yu utochneniya geologicheskogo stroeniya i perspektiv neftegazonosnosti. – Gelendzhik: FGUP «Yuzhmorgeologiya», 2014.
40. Pat. 2584467 C1 Ros. Federaciya, MPK E21B 43/24. Sposob razrabotki mestorozhdeniya vysokovyazkoj nefti/ R.S. Hisamov, A.M. Evdokimov, M.A. Sajfutdinov, A.T. Zaripov; zayavitel’ Publichnoe akcionernoe obshchestvo “Tatneft’ ” imeni V.D. Shashina. – № 2015146381/03; zayavl. 28.10.2015; opubl. 20.05.2016.
41. Pat. 2646151 C1 Ros. Federaciya, MPK E21B 43/24, E21B 7/04. Sposob razrabotki zalezhi vysokovyazkoj nefti/I.Z. Denislamov, A.I. Ponomarev, I.V. Vladimirov, F.F. Mindiyarov; zayavitel’ Federal’noe gosudarstvennoe byudzhetnoe obrazovatel’noe uchrezhdenie vysshego obrazovaniya “Ufimskij gosudarstvennyj neftyanoj tekhnicheskij universitet”. – № 2017119673; zayavl. 05.06.2017; opubl. 01.03.2018.
42. Pat. 2646902 C1 Ros. Federaciya, MPK E21B 43/20, E21B 43/24, E21B 7/04. Sposob razrabotki zalezhi vysokovyazkoj nefti/A.I. Ponomarev, I.Z. Denislamov, R.R. Ishbaev. – № 2017109942; zayavl. 24.03.2017; opubl. 12.03.2018.