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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
V. F. Tishkin, M. A. Trapeznikova, A. A. Chechina, N. G. Churbanova, “Simulation of traffic flows based on the quasi-gasdynamic approach and the cellular automata theory using supercomputers”, Computer Research and Modeling, 16:1 (2024), 175–194 |
2. |
N. G. Churbanova, M. A. Trapeznikova, V. V. Emets, “Modeling flows with porous inserts using QGD-system of equations”, Keldysh Institute preprints, 2024, 026, 11 pp. |
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2023 |
3. |
A. G. Churbanov, N. G. Churbanova, M. A. Trapeznikova, “Coupled prediction of flows in domains containing a porous medium and free stream”, Matem. Mod., 35:1 (2023), 34–50 ; Math. Models Comput. Simul., 15:4 (2023), 643–653 |
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2022 |
4. |
A. A. Chechina, N. G. Churbanova, M. A. Trapeznikova, A. V. Ermakov, M. S. German, A. A. Lyupa, “Cellular automata in the application to the modeling of traffic flows”, Keldysh Institute preprints, 2022, 098, 12 pp. |
5. |
M. A. Trapeznikova, A. A. Chechina, N. G. Churbanova, A. G. Garibyan, “Educational software platform for modeling and visualization of road
transport movement”, Keldysh Institute preprints, 2022, 054, 19 pp. |
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2021 |
6. |
S. V. Polyakov, M. A. Trapeznikova, A. G. Churbanov, N. G. Churbanova, “Prediction of incompressible flows in a porous medium-free stream system”, Keldysh Institute preprints, 2021, 071, 19 pp. |
3
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7. |
A. A. Chechina, N. G. Churbanova, M. A. Trapeznikova, “Reproduction of spatio-temporal structures of traffic flows using various ways of averaging data”, Matem. Mod., 33:1 (2021), 25–35 ; Math. Models Comput. Simul., 13:5 (2021), 756–762 |
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2019 |
8. |
M. A. Trapeznikova, N. G. Churbanova, G. U. Juraev, “Application of the fictitious domains method for the simulation of gas flows at low Mach numbers”, Keldysh Institute preprints, 2019, 106, 12 pp. |
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2018 |
9. |
A. A. Lyupa, M. A. Trapeznikova, A. A. Chechina, N. G. Churbanova, “Comparative analysis of explicit type algorithms for solving problems of filtration with the use of hyperbolized equations”, Keldysh Institute preprints, 2018, 248, 18 pp. |
10. |
A. Lyupa, M. A. Trapeznikova, A. A. Chechina, N. G. Churbanova, “An algorithm of the explicit type to solve problems of non-isothermal multiphase flows in porous media”, Keldysh Institute preprints, 2018, 101, 16 pp. |
1
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2017 |
11. |
M. A. Trapeznikova, A. A. Chechina, N. G. Churbanova, “Two-dimensional cellular automata model for simulation of traffic flows on the elements of city road network”, Matem. Mod., 29:9 (2017), 110–120 |
7
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2016 |
12. |
A. A. Chechina, M. S. German, A. V. Ermakov, M. A. Trapeznikova, N. G. Churbanova, “Modeling and visualization of vehicular flow on the road network elements using ŅAM-2D program system”, Keldysh Institute preprints, 2016, 124, 18 pp. |
7
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13. |
A. A. Lyupa, M. A. Trapeznikova, N. G. Churbanova, “Simulation of non-isothermal multiphase filtration with application of explicit difference schemes”, Keldysh Institute preprints, 2016, 103, 20 pp. |
2
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14. |
M. A. Trapeznikova, A. A. Chechina, N. G. Churbanova, “Traffic flow dynamics on road network fragments using two-dimensional mathematical models”, Keldysh Institute preprints, 2016, 093, 20 pp. |
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2015 |
15. |
A. A. Lyupa, D. N. Morozov, M. A. Trapeznikova, B. N. Chetverushkin, N. G. Churbanova, S. V. Lemeshevsky, “Simulation of oil recovery processes with the employment of high-performance computer systems”, Matem. Mod., 27:9 (2015), 73–80 ; Math. Models Comput. Simul., 8:2 (2016), 129–134 |
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2014 |
16. |
A. A. Lyupa, D. N. Morozov, M. A. Trapeznikova, B. N. Chetverushkin, N. G. Churbanova, “Three phase filtration modeling by explicit methods on hybrid computer systems”, Matem. Mod., 26:4 (2014), 33–43 ; Math. Models Comput. Simul., 6:6 (2014), 551–559 |
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17. |
M. A. Trapeznikova, N. G. Churbanova, “Simulation of gas flows at low Mach numbers on the basis of quasigasdynamic system of equations”, Vestn. Astrakhan State Technical Univ. Ser. Management, Computer Sciences and Informatics, 2014, no. 3, 113–124 |
18. |
M. A. Trapeznikova, A. A. Chechina, N. G. Churbanova, D. B. Polyakov, “Mathematical simulation of traffic flows based on the macro- and microscopic approaches”, Vestn. Astrakhan State Technical Univ. Ser. Management, Computer Sciences and Informatics, 2014, no. 1, 130–139 |
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2012 |
19. |
D. N. Morozov, M. A. Trapeznikova, B. N. Chetverushkin, N. G. Churbanova, “Simulation of filtration problems on hybrid computer systems”, Matem. Mod., 24:10 (2012), 33–39 ; Math. Models Comput. Simul., 5:3 (2013), 208–212 |
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2011 |
20. |
D. N. Morozov, M. A. Trapeznikova, B. N. Chetverushkin, N. G. Churbanova, “Application of explicit schemes to simulation of two-phase filtration process”, Matem. Mod., 23:7 (2011), 52–60 ; Math. Models Comput. Simul., 4:1 (2012), 62–67 |
16
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21. |
M. A. Trapeznikova, I. R. Furmanov, N. G. Churbanova, R. Lipp, “Simulation of multilane vehicle traffic flows based on the cellular automata theory”, Matem. Mod., 23:6 (2011), 133–146 ; Math. Models Comput. Simul., 4:1 (2012), 53–61 |
12
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2010 |
22. |
N. V. Isupov, M. A. Trapeznikova, N. G. Churbanova, E. V. Shilnikov, “Simulation of multiphase fluid infiltration processes in a layered porous medium”, Matem. Mod., 22:6 (2010), 84–98 ; Math. Models Comput. Simul., 3:1 (2011), 35–45 |
4
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23. |
B. N. Chetverushkin, D. N. Morozov, M. A. Trapeznikova, N. G. Churbanova, E. V. Shilnikov, “On an explicit scheme for filtration problem solution”, Matem. Mod., 22:4 (2010), 99–109 ; Math. Models Comput. Simul., 2:6 (2010), 669–677 |
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2009 |
24. |
A. B. Sukhinova, M. A. Trapeznikova, B. N. Chetverushkin, N. G. Churbanova, “Two-dimensional macroscopic model of traffic flows”, Matem. Mod., 21:2 (2009), 118–126 ; Math. Models Comput. Simul., 1:6 (2009), 669–676 |
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2006 |
25. |
Yu. N. Karamzin, M. A. Trapeznikova, B. N. Chetverushkin, N. G. Churbanova, “A two-dimensional model of traffic flows”, Matem. Mod., 18:6 (2006), 85–95 |
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2004 |
26. |
K. N. Ivanova, B. N. Chetverushkin, N. G. Churbanova, “Quasigasdynamic system of equations and Navier–Stokes equations”, Matem. Mod., 16:4 (2004), 98–104 |
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2001 |
27. |
L. W. Dorodnicyn, B. N. Chetverushkin, N. G. Churbanova, “Kinetically consistent difference schemes and quasi-gas-dynamic model for dense gas and liquid flows”, Matem. Mod., 13:4 (2001), 47–57 |
4
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1997 |
28. |
M. A. Trapeznikova, N. G. Churbanova, “Simulation of oil production process using explicit and implicit numerical methods”, Matem. Mod., 9:6 (1997), 53–66 |
4
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29. |
L. V. Tishkina, B. N. Chetverushkin, N. G. Churbanova, “Methods of acceleration $\alpha$-$\beta$ process solution of linear system of equations”, Matem. Mod., 9:2 (1997), 37–42 |
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1995 |
30. |
M. A. Kornilina, E. A. Samarskaya, B. N. Chetverushkin, N. G. Churbanova, M. V. Iakobovski, “Simulation of oil reservoir exploitation on parallel computer systems”, Matem. Mod., 7:2 (1995), 35–48 |
3
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1994 |
31. |
O. Yu. Milyukova, N. G. Churbanova, “On the development of parallel algorithms for the solution of 2D problems of radiation gas dynamics”, Matem. Mod., 6:9 (1994), 53–60 |
1
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32. |
E. A. Samarskaya, B. N. Chetverushkin, N. G. Churbanova, M. V. Iakobovski, “Simulation and analysis of pollution spreading in the subsoil water horizons using parallel systems”, Matem. Mod., 6:4 (1994), 3–12 |
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1993 |
33. |
S. V. Peigin, S. V. Timchenko, B. N. Chetverushkin, N. G. Churbanova, “Simulation of flow in threedimensional viscous shock layer on distributed memory multiprocessor system”, Matem. Mod., 5:7 (1993), 41–48 |
1
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1991 |
34. |
B. N. Chetverushkin, N. G. Churbanova, “On the application of geometric parallelism principle to $(\alpha-\beta)$-iteration algorithm”, Matem. Mod., 3:3 (1991), 123–129 |
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1987 |
35. |
B. N. Chetverushkin, N. G. Churbanova, “Conservative kinetically matched schemes for solving gas-dynamic problems”, Zh. Vychisl. Mat. Mat. Fiz., 27:12 (1987), 1900–1906 ; U.S.S.R. Comput. Math. Math. Phys., 27:6 (1987), 197–201 |
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1986 |
36. |
N. G. Churbanova, “Application of a kinetic algorithm for calculating gas-dynamical axially symmetric flows”, Differ. Uravn., 22:7 (1986), 1275–1279 |
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1983 |
37. |
M. I. Volchinskaya, V. I. Mazhukin, B. N. Chetverushkin, N. G. Churbanova, “Solution of two-dimensional non-stationary problems of the dynamics of a radiating gas”, Zh. Vychisl. Mat. Mat. Fiz., 23:5 (1983), 1177–1185 ; U.S.S.R. Comput. Math. Math. Phys., 23:5 (1983), 99–105 |
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