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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
O. R. Rahimly, “Software for solving problems of filtration fluid dynamics with phase hydrate and water-ice transformations”, Num. Meth. Prog., 25:2 (2024), 175–186 |
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2023 |
2. |
O. R. Rahimly, Yu. A. Poveshchenko, V. O. Podryga, “On a problem of nonvariant equilibrium of phase ice-hydrate transformation”, Matem. Mod., 35:12 (2023), 113–126 ; Math. Models Comput. Simul., 16:2 (2024), 310–320 |
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2022 |
3. |
Yu. A. Poveshchenko, M. N. Koleva, O. R. Rahimly, V. O. Podryga, P. I. Rahimly, “On convergence of difference schemes of support operator method for rotational operations of vector analysis on tetrahedral meshes”, Keldysh Institute preprints, 2022, 026, 19 pp. |
4. |
O. R. Rahimly, Yu. A. Poveshchenko, S. B. Popov, V. O. Podryga, P. I. Rahimly, “Two-layer completely conservative gas dynamics schemes with nodal approximation and adaptive regularization of the solution in Euler variables”, Keldysh Institute preprints, 2022, 008, 19 pp. |
5. |
Yu. A. Poveshchenko, P. I. Rahimly, V. O. Podryga, O. R. Rahimly, G. I. Kazakevich, S. B. Popov, “Investigation of filtration processes in a gas-hydrate reservoir taking into account salinity and solid-phase inclusions”, Matem. Mod., 34:5 (2022), 88–104 ; Math. Models Comput. Simul., 14:6 (2022), 1011–1020 |
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6. |
O. R. Rahimly, Yu. A. Poveshchenko, S. B. Popov, “Two-layer 1D completely conservative difference schemes of gas dynamics with adaptive regularization”, Matem. Mod., 34:3 (2022), 26–42 ; Math. Models Comput. Simul., 14:5 (2022), 771–782 |
7. |
M. E. Ladonkina, Yu. A. Poveschenko, O. R. Rahimly, H. Zhang, “Theoretical study of stability of nodal completely conservative difference schemes with viscous filling for gas dynamics equations in Euler variables”, Zhurnal SVMO, 24:3 (2022), 317–330 |
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2021 |
8. |
M. E. Ladonkina, Yu. A. Poveschenko, O. R. Rahimly, H. Zhang, “Theoretical analysis of fully conservative difference schemes with adaptive viscosity”, Zhurnal SVMO, 23:4 (2021), 412–423 |
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2019 |
9. |
G. I. Kazakevich, Yu. A. Poveshchenko, V. O. Podryga, P. I. Rahimly, O. R. Rahimly, “Numerical modeling of the characteristic problems of dissociation of gas hydrates in a porous medium. One-dimensional formulation”, Keldysh Institute preprints, 2019, 022, 15 pp. |
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10. |
Yu. A. Poveshchenko, M. E. Ladonkina, V. O. Podryga, O. R. Rahimly, Yu. S. Sharova, “On a two-layer completely conservative difference scheme of gas dynamics in Eulerian variables with adaptive regularization of solution”, Keldysh Institute preprints, 2019, 014, 23 pp. |
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11. |
P. I. Rahimly, O. R. Rahimly, Yu. A. Poveschenko, V. O. Podryga, I. V. Gasilova, “Application software for simulations of fluid dynamics and phase transformations in collectors with gas-hydrate depositions”, Matem. Mod., 31:2 (2019), 95–111 ; Math. Models Comput. Simul., 11:5 (2019), 789–798 |
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2018 |
12. |
P. I. Rahimly, Yu. A. Poveshchenko, V. O. Podryga, O. R. Rahimly, S. B. Popov, “Modeling the processes of joint filtration in melted zone and piezocunductive medium with gas hydrate inclusions”, Keldysh Institute preprints, 2018, 040, 32 pp. |
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13. |
P. I. Rahimly, Yu. S. Sharova, O. R. Rahimly, V. O. Podryga, I. V. Gasilova, S. B. Popov, Yu. A. Poveschenko, “Modeling of some problems of fluid dynamics containing gas hydrates based on splitting by physical processes”, Keldysh Institute preprints, 2018, 039, 27 pp. |
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14. |
P. I. Rahimly, Y. A. Poveshchenko, V. O. Podryga, O. R. Rahimly, I. V. Ritus, “Problems of joint filtration in melted zone and piezoconductive medium with gas hydrate inclusions”, Matem. Mod., 30:6 (2018), 95–116 ; Math. Models Comput. Simul., 11:1 (2019), 133–146 |
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2017 |
15. |
S. Yu. Guskov, N. V. Zmitrenko, O. R. Rahimly, “A converging shock wave for ignition of a pre-compressed target of laser thermonuclear fusion”, Keldysh Institute preprints, 2017, 094, 20 pp. |
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16. |
P. I. Rahimli, Yu. A. Poveshchenko, O. R. Rahimly, V. O. Podryga, G. I. Kazakevich, I. V. Gasilova, “The use of splitting on physical processes for the modeling of gas hydrates dissociation”, Matem. Mod., 29:7 (2017), 133–144 ; Math. Models Comput. Simul., 10:1 (2018), 69–78 |
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2016 |
17. |
N. V. Zmitrenko, O. R. Rahimly, “The convergence of the shock wave in the presence of energy release”, Keldysh Institute preprints, 2016, 055, 18 pp. |
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