Abstract:
This paper presents a mathematical model for the methane hydrate-carbon dioxide replacement by injection of carbon dioxide into a porous medium rich in methane and its gas hydrates. Numerical solutions describing the pressure and temperature variations in a reservoir of finite length are obtained. It is shown that the replacement process is accompanied by reducing the pressure and increasing the temperature of the porous medium. It is established that during the time of complete replacement of methane from a reservoir decreases with increasing permeability of the porous medium and the pressure of the injected gas.
Citation:
I. K. Gimaltdinov, M. V. Stolpovskii, M. K. Khasanov, “Recovery of methane from gas hydrates in a porous medium by injection of carbon dioxide”, Prikl. Mekh. Tekh. Fiz., 59:1 (2018), 3–12; J. Appl. Mech. Tech. Phys., 59:1 (2018), 1–8
This publication is cited in the following 14 articles:
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M. K. Khasanov, M. V. Stolpovskii, “Injection of Superheated Water Vapor into a Porous Reservoir Saturated in the Initial State with Methane and Its Hydrate”, Theor Found Chem Eng, 58:4 (2024), 1272
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Pengfei Shen, Xiyu Mao, Chaoqun Cui, Xinwang Li, Meng Li, Li Chen, Dandan Liu, Zhenyuan Yin, “Increasing Gas Production of Continuous Freeze-Thaw Hydrate Deposits Based on Local Reservoir Reconstruction”, Geofluids, 2023 (2023), 1
K. V. Simonov, A. O. Buriachenko, “Multi-Vector Diversification Concept for Russian Oil and Gas Company: Prerequisistes, Trends, Opportunities”, Upravlencheskie nauki, 12:4 (2023), 20
M. R. Davletshina, A. S. Chiglintseva, I. K. Gimaltdinov, M. V. Stolpovsky, PROCEEDINGS OF THE II INTERNATIONAL CONFERENCE ON ADVANCES IN MATERIALS, SYSTEMS AND TECHNOLOGIES: (CAMSTech-II 2021), 2467, PROCEEDINGS OF THE II INTERNATIONAL CONFERENCE ON ADVANCES IN MATERIALS, SYSTEMS AND TECHNOLOGIES: (CAMSTech-II 2021), 2022, 080020
Zhiyuan Wang, Yangyang Zhang, Zhenyu Peng, Zhengfeng Shan, BaoJiang Sun, Jinsheng Sun, “Recent Advances in Methods of Gas Recovery from Hydrate-Bearing Sediments: A Review”, Energy Fuels, 36:11 (2022), 5550
Phakamile Ndlovu, Saeideh Babaee, Paramespri Naidoo, “Review on CH4-CO2 replacement for CO2 sequestration and CH4/CO2 hydrate formation in porous media”, Fuel, 320 (2022), 123795
M.R. Davletshina, A.S. Chiglintseva, “NUMERICAL STUDY OF THE FAILURE OF A SPHERICAL HYDRATE MONOLITH”, ntj-oil, 2021, no. 6, 42
M V Stolpovsky, A S Chiglintseva, M R Davletshina, “Axisymmetric hydrate monolith destruction problem”, J. Phys.: Conf. Ser., 2094:2 (2021), 022014
A.S. Chiglintseva, M.R. Davletshina, M.V. Stolpovskiy, E.Yu. Kochanova, “SPECIFIC FEATURES OF METHANE GAS HYDRATE DECOMPOSITION DURING PURGE OF THE FORMATION”, ntj-oil, 2021, no. 5, 47
Pengfei Shen, Xiaosen Li, Zhenhe Li, Gang Li, “Permeability determination of hydrate sediments and a new reduction model considering hydrate growth habit”, Fuel, 279 (2020), 118297
Marat K. Khasanov, Nail G. Musakaev, Maxim V. Stolpovsky, Svetlana R. Kildibaeva, “Mathematical Model of Decomposition of Methane Hydrate during the Injection of Liquid Carbon Dioxide into a Reservoir Saturated with Methane and Its Hydrate”, Mathematics, 8:9 (2020), 1482
Nail G. Musakaev, Stanislav L. Borodin, Denis S. Belskikh, “Calculation of the Parameters for the Process of Gas Injection into a Reservoir Saturated with Methane and Its Hydrate”, TSU Herald. Phys Math Model. Oil, Gas, Energy, 4:3 (2018), 165