Methodology for Calculating the Parameters of Non-isothermal Filtration Considering the CO$${}_{\mathbf{2}}$$–CH$${}_{\mathbf{4}}$$ Replacement in Methane Hydrate

Author:

Musakaev N. G.,Borodin S. L.,Belskikh D. S.

Publisher

Pleiades Publishing Ltd

Reference22 articles.

1. S. V. Alekseenko, ‘‘Climate change and energy,’’ in Proceedings of the 11th International Russian-Kazakhstan Symposium, Kemerovo, Russia, 2022 (2022), p. 16.

2. J. W. Jung and J. C. Santamarina, ‘‘CH4-CO2 replacement in hydrate-bearing sediments: A pore-scale study,’’ Geochem. Geophys. Geosyst. 11, Q0AA13 (2010).

3. L. Zhang, L. Yang, J. Wang, J. Zhao, H. Dong, M. Yang, Y. Liu, and Y. Song, ‘‘Enhanced CH4 recovery and CO2 storage via thermal stimulation in the CH4/CO2 replacement of methane hydrate,’’ Chem. Eng. J. 308, 40–49 (2017).

4. S. L. Borodin and D. S. Belskikh, ‘‘The current state of researches related to the extraction of methane from a porous medium containing hydrate,’’ Vestn. Tyumen. Univ., Fiz. Mat. Model. Neft Gaz Energ. 4 (4), 131–147 (2018).

5. D. Schoderbek and R. Boswell, ‘‘Ignik Sikumi #1, gas hydrate test well, successfully installed on the Alaska North Slope,’’ Fire the Ice, NETL Methane Hydrate Newslett. 11 (1), 1–5 (2011).

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