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Khasanov, Marat K

Statistics Math-Net.Ru
Total publications: 23
Scientific articles: 23

Number of views:
This page:225
Abstract pages:2777
Full texts:1441
References:404
Associate professor
Candidate of physico-mathematical sciences (2007)
Speciality: 01.02.05 (Mechanics of fluids, gases and plasmas)
E-mail:

https://www.mathnet.ru/eng/person104744
List of publications on Google Scholar
List of publications on ZentralBlatt

Publications in Math-Net.Ru Citations
2023
1. M. K. Khasanov, S. R. Kildibaeva, M. V. Stolpovskiy, “Modelling the process of non-equilibrium hydrate formation in a porous reservoir”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 16:2 (2023),  68–77  mathnet
2021
2. N. G. Musakaev, S. L. Borodin, M. K. Khasanov, “Numerical modeling of gas hydrate formation in a porous collector”, Prikl. Mekh. Tekh. Fiz., 62:4 (2021),  57–67  mathnet  elib; J. Appl. Mech. Tech. Phys., 62:4 (2021), 573–582 5
2020
3. M. K. Khasanov, M. V. Stolpovskii, “Numerical study of the injection of liquid sulfur dioxide in a porous layer saturated with methane and water”, Prikl. Mekh. Tekh. Fiz., 61:3 (2020),  90–99  mathnet  elib; J. Appl. Mech. Tech. Phys., 61:3 (2020), 391–399
4. M. K. Khasanov, S. R. Kil'dibaeva, “Mathematical model of gas hydrate formation of sulfur dioxide by injecting liquid sulfur dioxide into a layer saturated with methane and water”, Vestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki, 30:1 (2020),  125–133  mathnet  isi 1
2019
5. N. G. Musakaev, M. K. Khasanov, S. L. Borodin, “Construction of an analytical solution of the problem on the formation of gas hydrate in a porous mine”, Itogi Nauki i Tekhniki. Sovrem. Mat. Pril. Temat. Obz., 172 (2019),  91–95  mathnet
6. M. K. Khasanov, M. V. Stolpovsky, N. G. Musakaev, R. R. Yagafarova, “Numerical solutions of the problem of gas hydrate formation upon injection of gas into a porous medium partly saturated by ice”, Vestn. Udmurtsk. Univ. Mat. Mekh. Komp. Nauki, 29:1 (2019),  92–105  mathnet  elib 6
2018
7. M. K. Khasanov, M. V. Stolpovskii, I. K. Gimaltdinov, “Modeling of gas hydrate formation upon injection of carbon oxide gas into a natural reservoir”, Prikl. Mekh. Tekh. Fiz., 59:3 (2018),  94–102  mathnet  elib; J. Appl. Mech. Tech. Phys., 59:3 (2018), 466–473 7
8. V. Sh. Shagapov, A. S. Chiglintseva, A. A. Rusinov, M. K. Khasanov, I. G. Khusainov, “Injection of a hydrate-forming gas into a snow block saturated with the same gas”, Prikl. Mekh. Tekh. Fiz., 59:3 (2018),  43–56  mathnet  elib; J. Appl. Mech. Tech. Phys., 59:3 (2018), 422–433 2
9. I. K. Gimaltdinov, M. V. Stolpovskii, M. K. Khasanov, “Erratum to: “Recovery of methane from gas hydrates in a porous medium by injection of carbon dioxide””, J. Appl. Mech. Tech. Phys., 59:2 (2018), 386  mathnet
10. 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  mathnet  elib; J. Appl. Mech. Tech. Phys., 59:1 (2018), 1–8 13
11. N. G. Musakaev, M. K. Khasanov, S. L. Borodin, D. S. Belskikh, “Numerical investigation of the methane hydrate decomposition in the process of warm gas injection into a hydrate-saturated reservoir”, Vestn. Tomsk. Gos. Univ. Mat. Mekh., 2018, no. 56,  88–101  mathnet  elib 8
12. M. K. Khasanov, “Mathematical model of hydrogen sulfide injection into a natural reservoir accomponied by its hydrate formation”, Vestn. Tomsk. Gos. Univ. Mat. Mekh., 2018, no. 55,  113–123  mathnet  elib
13. M. K. Khasanov, G. R. Rafikova, “Mathematical model of gas hydrate of hydrogen sulfide formation during its injection into a natural layer”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 11:2 (2018),  73–82  mathnet  elib
2017
14. M. K. Khasanov, “Carbon ovide injection into a reservoir, saturated with methane and water”, Prikl. Mekh. Tekh. Fiz., 58:4 (2017),  95–107  mathnet  elib; J. Appl. Mech. Tech. Phys., 58:4 (2017), 652–663 2
15. V. Sh. Shagapov, M. K. Khasanov, “Regimes of methane recovery from gas hydrate on injection of “warm” carbon dioxide into a porous medium”, TVT, 55:5 (2017),  753–761  mathnet  elib; High Temperature, 55:5 (2017), 737–745  isi  scopus 23
16. M. K. Khasanov, M. V. Stolpovsky, S. R. Kildibaeva, “Mathematical model of methane replacement process in gas hydrate with carbon dioxide in a porous layer”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 10:4 (2017),  124–131  mathnet  isi  elib 1
2016
17. N. G. Musakaev, M. K. Khasanov, “The mathematical model of the carbon dioxide burial in the reservoir saturated with hydrate”, Proceedings of the Mavlyutov Institute of Mechanics, 11:2 (2016),  181–187  mathnet 1
18. V. Sh. Shagapov, M. K. Khasanov, R. S. Bayramgulova, “The theory of injection of liquid carbon dioxide in formation, saturated system “hydrate of methane-methane” in the mode of formation of the intermediate melt zone”, Proceedings of the Mavlyutov Institute of Mechanics, 11:2 (2016),  171–180  mathnet 2
19. V. Sh. Shagapov, M. K. Khasanov, N. G. Musakaev, “Injection of liquid carbon dioxide into a bed partially saturated with methane hydrate”, Prikl. Mekh. Tekh. Fiz., 57:6 (2016),  139–149  mathnet  elib; J. Appl. Mech. Tech. Phys., 57:6 (2016), 1083–1092 17
20. V. Sh. Shagapov, G. R. Rafikova, M. K. Khasanov, “On the theory of formation of gas hydrate in partially water-saturated porous medium when injecting methane”, TVT, 54:6 (2016),  911–920  mathnet  elib; High Temperature, 54:6 (2016), 858–866  isi  scopus 26
21. V. Sh. Shagapov, M. K. Khasanov, G. R. Rafikova, “Displacement of methane from a gas hydrate reservoir in the process of carbon dioxide injection”, Vestn. Tomsk. Gos. Univ. Mat. Mekh., 2016, no. 6(44),  104–114  mathnet  elib 3
2011
22. V. Sh. Shagapov, M. K. Khasanov, I. K. Gimaltdinov, M. V. Stolpovskii, “Numerical modeling of formation of a gas hydrate in a finite-length porous bed purged by a gas”, Prikl. Mekh. Tekh. Fiz., 52:4 (2011),  116–126  mathnet  elib; J. Appl. Mech. Tech. Phys., 52:4 (2011), 599–607 20
2008
23. V. Sh. Shagapov, M. K. Khasanov, N. G. Musakaev, “Formation of a gas hydrate due to injection of a cold gas into a porous reservoir partly saturated by water”, Prikl. Mekh. Tekh. Fiz., 49:3 (2008),  137–150  mathnet  elib; J. Appl. Mech. Tech. Phys., 49:3 (2008), 462–472 27

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