Analysis of Efficiency and Result of Pilot Test of Pre-cross-Linked Gel Particles for Conformance Control at Oilfields Complicated by High Mineralization in the Republic of Tatarstan
https://doi.org/10.18599/grs.2025.2.17
Abstract
This paper presents the results of application of modified preformed particle gels based on different monomers and aluminosilicates for conformance control technology at the fields of the Republic of Tatarstan, characterized by fractured carbonate reservoir with high salinity of formation water (more than 230 g/l). To evaluate the efficiency of synthesized gel particles at the first stage “bottle test” were carried out (swelling ratio, long-term stability, selection of the optimal size, etc.), according to the results of which the most effective sample was selected, characterized by high absorption capacity (more than 7 g/g) and able to retain its blocking properties for 180 days. At the next stage of works filtration experiments on core material were carried out to evaluate blocking properties, the results of which proved the effectiveness of application for blocking of high permeability channels. The results of laboratory studies allowed to proceed to pilot tests on injection gel particles. Injection of the reagent was carried out in the flowing mode with the gel particles with the concentration of 0.1–0.8% wt. in the injected highly mineralized water with the flow rate not more than 5 m3/hour. Dynamics of injection pressure change was used as the main criterion of efficiency assessment during the pilot test.
About the Authors
A. Z. MustafinRussian Federation
Aidar Z. Mustafin – Senior Lecturer
4/5 Kremlevskaya str., Kazan, 420008
M. A. Varfolomeev
Russian Federation
Mikhail A. Varfolomeev – Cand. Sci. (Chemistry), Leading Researcher
4/5 Kremlevskaya str., Kazan, 420008
A. V. Bolotov
Russian Federation
Alexander V. Bolotov – Cand. Sci. (Chemistry), Associate Professor
4/5 Kremlevskaya str., Kazan, 420008
V. K. Derevyanko
Russian Federation
Vadim K. Derevyanko – Junior Researcher
4/5 Kremlevskaya str., Kazan, 420008
I. F. Minhanov
Russian Federation
Ilgiz F. Minhanov – Cand. Sci. (Engineering), Associate Professor
4/5 Kremlevskaya str., Kazan, 420008
R K. Khairtdinov
Russian Federation
Ruslan K. Khairtdinov – Chief Geologist
48 Shevchenko str., Almetyevsk, 423450
References
1. Abdulbaki M. et al. (2014). Journal of Petroleum Science and Engineering A critical review on use of polymer microgels for conformance control purposes. Journal of Petroleum Science and Engineering, 122, pp. 741–753. https://doi.org/10.1016/j.petrol.2014.06.034
2. Akbari S. et al. (2019). A critical review of concept and methods related to accessible pore volume during polymer-enhanced oil recovery. Journal of Petroleum Science and Engineering, 182, 106263. https://doi.org/10.1016/j.petrol.2019.106263
3. Bai B., Zhou J. and Yin M. (2015). A comprehensive review of polyacrylamide polymer gels for conformance control. Petroleum Exploration and Development, 42(4), pp. 525–532. https://doi.org/10.1016/S1876-3804(15)30045-8
4. Caili D., Qing Y. and Fulin Z. (2010). In-depth profile control technologies in China—A review of the state of the art. Petroleum Science and Technology, 28(13), pp. 1307–1315. https://doi.org/10.1080/10916460903419164
5. Esfahlan M.S., Khodapanah E. and Tabatabaei-Nezhad S.A. (2021). Comprehensive review on the research and field application of preformed particle gel conformance control technology. Journal of Petroleum Science and Engineering, 202, 108440. https://doi.org/10.1016/j.petrol.2021.108440
6. Farajzadeh R. et al. (2012). Foam – oil interaction in porous media : Implications for foam assisted enhanced oil recovery. Advances in Colloid and Interface Science, 183–184, pp. 1–13. https://doi.org/10.1016/j.cis.2012.07.002
7. Farasat A. et al. (2017). Effects of reservoir temperature and water salinity on the swelling ratio performance of enhanced preformed particle gels. Korean J. Chem. Eng., 34(5), pp. 1509–1516. https://doi.org/10.1007/s11814-017-0017-1
8. Goudarzi A. et al. (2014). New experiments and models for conformance control microgels. SPE Improved Oil Recovery Conference, SPE-169159. https://doi.org/10.2118/169159-MS
9. Guo P. et al. (2022). Chemical water shutoff agents and their plugging mechanism for gas reservoirs: A review and prospects. Journal of natural gas science and engineering, 104, 104658, https://doi.org/10.1016/j.jngse.2022.104658
10. Kadyrov R., Mukhametshin V., Galiullina F. (2021). Methods of preparation and plugging materials application technology when waterproofing works on oil wells performing. Neftegazovoe delo, 19(1), pp. 77–84. (In Russ.) https://doi.org/10.17122/ngdelo-2021-1-77-84
11. Ketova Y., Bai. B., Kazantsev A., Galkin S. (2019). Analysis of the efficiency of waterflooding of oil reservoirs using water-soluble polyacrylamide and preliminary cross-linked polyacrylamide particles. Perm Journal of Petroleum and Mining Engineering, 19(3), pp. 251–262. (In Russ.) https://doi.org/10.15593/2224-9923/2019.3.5
12. Litvin V. et al. (2009). Polymeric flooding on the experimental plot of Samotlorsky deposit. Burenie i neft, (4), pp. 34–37. (In Russ.)
13. Mirzoev K. et al. (2012). Increase oil recovery by means of decrease injection water and vibrations taking into account tidal movements of the earth. Georesursy, geoenergetika, geopolitika, 1(5). (In Russ.)
14. Saghafi H.R. et al. (2016). Performance evaluation of optimized preformed particle gel (PPG) in porous media. Chemical Engineering Research and Design, 112, pp. 175–189. https://doi.org/10.1016/j.cherd.2016.06.004
15. Thomas А. et al. (2017). Polymer flooding to increase oil recovery at light and heavy oil fields. Territoriya neftegaz, (7–8), pp. 58–67. (In Russ.)
16. Veliyev E. (2020). Review of modern in-situ fluid diversion technologies. SOCАR Proc., (2), pp. 50–66. (In Russ.) https://doi.org/10.5510/OGP20200200432
17. Yu L., Sang Q. and Dong M. (2018). Enhanced oil recovery ability of branched preformed particle gel in heterogeneous reservoirs, Oil & Gas Science and Technology–Revue d’IFP Energies nouvelles, 73, p. 65. https://doi.org/10.1016/j.fuel.2014.07.065
18. Yuan C., Pu W. and Varfolomeev M.A. et al. (2020). Deformable Microgel for Enhanced Oil Recovery in High-Temperature and Ultrahigh-Salinity Reservoirs : How to Design the Particle Size of Microgel to Achieve Its Optimal Match with Pore Throat of Porous Media. SPE J., 26, pp. 2053–2067. https://doi.org/10.2118/197804-PA
Review
For citations:
Mustafin A.Z., Varfolomeev M.A., Bolotov A.V., Derevyanko V.K., Minhanov I.F., Khairtdinov R.K. Analysis of Efficiency and Result of Pilot Test of Pre-cross-Linked Gel Particles for Conformance Control at Oilfields Complicated by High Mineralization in the Republic of Tatarstan. Georesursy = Georesources. 2025;27(2):234–242. (In Russ.) https://doi.org/10.18599/grs.2025.2.17