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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
I. V. Egorov, N. K. Nguyen, N. V. Pal'chekovskaya, “Численное моделирование взаимодействия волны Маха и пограничного слоя на плоской пластине”, TVT, 61:5 (2023), 752–759 |
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2022 |
2. |
I. V. Egorov, A. V. Novikov, P. V. Chuvakhov, “Numerical simulation of turbulent spots evolution in supersonic boundary layer over a plate”, Matem. Mod., 34:7 (2022), 63–72 ; Math. Models Comput. Simul., 15:1 (2023), 118–124 |
2
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3. |
I. V. Egorov, N. K. Nguyen, “Simulation of the laminar–turbulent transition by applying hybrid difference schemes”, Zh. Vychisl. Mat. Mat. Fiz., 62:4 (2022), 677–693 ; Comput. Math. Math. Phys., 62:4 (2022), 658–673 |
1
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2021 |
4. |
I. V. Egorov, N. K. Nguyen, T. Sh. Nguen, P. V. Chuvakhov, “Simulation of the laminar–turbulent transition by applying dissipative numerical schemes”, Zh. Vychisl. Mat. Mat. Fiz., 61:2 (2021), 268–280 ; Comput. Math. Math. Phys., 61:2 (2021), 254–266 |
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2018 |
5. |
I. V. Egorov, A. V. Novikov, N. V. Palchekovskaya, “Numerical simulation of the flow over a segment-conical body on the basis of Reynolds equations”, Zh. Vychisl. Mat. Mat. Fiz., 58:1 (2018), 123–135 ; Comput. Math. Math. Phys., 58:1 (2018), 118–129 |
6
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2017 |
6. |
P. V. Chuvakhov, V. Ya. Borovoy, I. V. Egorov, V. N. Radchenko, H. Olivier, A. Rogelia, “Effect of small bluntness on the formation of Görtler vortices in a supersonic flow around a compression corner”, Prikl. Mekh. Tekh. Fiz., 58:6 (2017), 23–40 ; J. Appl. Mech. Tech. Phys., 58:6 (2017), 975–989 |
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7. |
I. V. Egorov, A. V. Novikov, A. V. Fedorov, “Direct numerical simulation of the laminar-turbulent transition at hypersonic flow speeds on a supercomputer”, Zh. Vychisl. Mat. Mat. Fiz., 57:8 (2017), 1347–1373 ; Comput. Math. Math. Phys., 57:8 (2017), 1335–1359 |
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2016 |
8. |
V. A. Bashkin, I. V. Egorov, I. V. Ezhov, “Circular cyllinder in a transonic flow at high Reynolds numbers: Thermal problem”, TVT, 54:4 (2016), 576–583 ; High Temperature, 54:4 (2016), 547–554 |
1
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9. |
V. A. Bashkin, I. V. Egorov, N. V. Pal'chekovskaya, “The interaction of shock waves with a boundary layer on a sharp plate and a blunted plate”, TVT, 54:3 (2016), 379–392 ; High Temperature, 54:3 (2016), 356–369 |
5
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10. |
I. V. Egorov, A. V. Novikov, “Direct numerical simulation of laminar-turbulent flow over a flat plate at hypersonic flow speeds”, Zh. Vychisl. Mat. Mat. Fiz., 56:6 (2016), 1064–1081 ; Comput. Math. Math. Phys., 56:6 (2016), 1048–1064 |
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2015 |
11. |
I. V. Egorov, N. V. Pal'chekovskaya, V. V. Shvedchenko, “The effect of spatial perturbations of a supersonic flow on heat flow to the surface of blunt bodies”, TVT, 53:5 (2015), 713–726 ; High Temperature, 53:5 (2015), 677–689 |
4
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2008 |
12. |
V. A. Bashkin, I. V. Egorov, B. E. Zhestkov, V. V. Shvedchenko, “Numerical investigation of the flow field and heat transfer in the circuit of a high-temperature wind-tunnel facility”, TVT, 46:5 (2008), 771–783 ; High Temperature, 46:5 (2008), 705–717 |
8
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2007 |
13. |
I. V. Egorov, A. V. Novikov, A. V. Fedorov, “Numerical simulation of stabilization of the boundary layer on a surface with a porous coating in a supersonic separated flow”, Prikl. Mekh. Tekh. Fiz., 48:2 (2007), 39–47 ; J. Appl. Mech. Tech. Phys., 48:2 (2007), 176–183 |
3
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2005 |
14. |
V. A. Bashkin, I. V. Egorov, V. V. Pafnut'ev, “Aerodynamic Heating of a Thin Sharp-Nose Circular Cone in Supersonic Flow”, TVT, 43:5 (2005), 732–744 ; High Temperature, 43:5 (2005), 733–745 |
4
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2004 |
15. |
V. A. Bashkin, I. V. Egorov, D. V. Ivanov, “Evolution of the flow field around a circular cylinder and a sphere upon instantaneous start with a supersonic velocity”, Prikl. Mekh. Tekh. Fiz., 45:3 (2004), 44–49 ; J. Appl. Mech. Tech. Phys., 45:3 (2004), 344–348 |
2
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2002 |
16. |
V. A. Bashkin, I. V. Yegorov, D. V. Ivanov, V. V. Pafnut'ev, “Three-dimensional laminar streamlining of axially symmetric bodies by supersonic gas flow”, Zh. Vychisl. Mat. Mat. Fiz., 42:12 (2002), 1864–1874 ; Comput. Math. Math. Phys., 42:12 (2002), 1792–1801 |
4
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2001 |
17. |
V. A. Bashkin, I. V. Egorov, D. V. Ivanov, “Effect of the temperature drop between the isothermic walls of a channel on the structure of supersonic flow and on the aerodynamic properties”, TVT, 39:4 (2001), 581–588 ; High Temperature, 39:4 (2001), 540–547 |
18. |
V. A. Bashkin, I. V. Egorov, D. V. Ivanov, “Supersonic flow of viscous gas in a flat channel at high values of the Reynolds number”, TVT, 39:1 (2001), 115–122 ; High Temperature, 39:1 (2001), 111–118 |
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2000 |
19. |
V. A. Bashkin, I. V. Egorov, M. V. Egorova, D. V. Ivanov, “Development of a flow field structure in the vicinity of a circular cylinder in the presence of a laminar-turbulent transition”, TVT, 38:5 (2000), 759–768 ; High Temperature, 38:5 (2000), 732–741 |
1
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1998 |
20. |
V. I. Alferov, I. V. Egorov, “Hypersonic flow in an MHD-acceleration facility and under full-scale conditions”, Prikl. Mekh. Tekh. Fiz., 39:2 (1998), 91–102 ; J. Appl. Mech. Tech. Phys., 39:2 (1998), 239–248 |
1
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21. |
I. V. Yegorov, D. V. Ivanov, “Application of Newton's method in simulation of unsteady separated flows”, Zh. Vychisl. Mat. Mat. Fiz., 38:3 (1998), 504–509 ; Comput. Math. Math. Phys., 38:3 (1998), 488–492 |
1
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1997 |
22. |
I. V. Yegorov, D. V. Ivanov, “Simulation of the flow with nonequilibrium chemical reactions in a channel of various crossection”, Matem. Mod., 9:11 (1997), 85–100 |
1
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23. |
V. A. Bashkin, I. V. Egorov, D. V. Ivanov, “Application of the Newton method to the calculation of internal supersonic separated flows”, Prikl. Mekh. Tekh. Fiz., 38:1 (1997), 30–42 ; J. Appl. Mech. Tech. Phys., 38:1 (1997), 26–37 |
3
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24. |
I. V. Yegorov, D. V. Ivanov, “Simulation of confined separated flows in chemical nonequilibrium”, Zh. Vychisl. Mat. Mat. Fiz., 37:6 (1997), 751–758 ; Comput. Math. Math. Phys., 37:6 (1997), 731–738 |
1
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1996 |
25. |
I. V. Egorov, D. V. Ivanov, “The use of fully implicit monotone schemes to model plane internal flows”, Zh. Vychisl. Mat. Mat. Fiz., 36:12 (1996), 91–107 ; Comput. Math. Math. Phys., 36:12 (1996), 1717–1730 |
5
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1994 |
26. |
I. Yu. Babaev, V. A. Bashkin, I. V. Yegorov, “Numerical solution of the Navier-Stokes equations using variational iteration methods”, Zh. Vychisl. Mat. Mat. Fiz., 34:11 (1994), 1693–1703 ; Comput. Math. Math. Phys., 34:11 (1994), 1455–1462 |
17
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1991 |
27. |
I. V. Yegorov, O. L. Zaitsev, “An approach to the numerical solution of the bidimensional Navier–Stokes equations using the direct calculation method”, Zh. Vychisl. Mat. Mat. Fiz., 31:2 (1991), 286–299 ; U.S.S.R. Comput. Math. Math. Phys., 31:2 (1991), 80–89 |
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