|
|
Publications in Math-Net.Ru |
Citations |
|
2023 |
1. |
V. S. Surov, “About one version of the nodal method of characteristics”, Computer Research and Modeling, 15:1 (2023), 29–44 |
2
|
2. |
V. S. Surov, “To the calculation of flows of gas-liquid mixtures by a modified nodal characteristics”, Sib. Zh. Vychisl. Mat., 26:4 (2023), 431–450 |
|
2022 |
3. |
V. S. Surov, “Relaxation model of viscous heat-conducting gas”, Computer Research and Modeling, 14:1 (2022), 23–43 |
1
|
|
2021 |
4. |
V. S. Surov, “Multidimensional nodal method of characteristics for hyperbolic systems”, Computer Research and Modeling, 13:1 (2021), 19–32 |
6
|
|
2020 |
5. |
V. S. Surov, “To calculating heat-conducting vapor–gas–droplet mixture flows”, Sib. Zh. Vychisl. Mat., 23:2 (2020), 201–217 ; Num. Anal. Appl., 13:2 (2020), 165–179 |
3
|
|
2018 |
6. |
V. S. Surov, “Hyperbolic model of a single-speed, heat-conductive mixture with interfractional heat transfer”, TVT, 56:6 (2018), 914–923 ; High Temperature, 56:6 (2018), 890–899 |
10
|
|
2017 |
7. |
V. S. Surov, “To calculation by the Godunov method of multidimensional currents multi-speed heterogeneous medium”, Matem. Mod., 29:3 (2017), 29–41 |
|
2014 |
8. |
V. S. Surov, I. V. Berezanskii, “Godunov's Method for a Multivelocity Model of Heterogeneous Medium”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 7:2 (2014), 87–98 |
2
|
9. |
V. S. Surov, “Hyperbolic models in the mechanics of heterogeneous media”, Zh. Vychisl. Mat. Mat. Fiz., 54:1 (2014), 139–148 ; Comput. Math. Math. Phys., 54:1 (2014), 148–157 |
10
|
|
2013 |
10. |
V. S. Surov, I. V. Berezansky, “The New Hyperbolic Models of Heterogeneous Environments”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 6:1 (2013), 72–84 |
|
2009 |
11. |
V. S. Surov, “A hyperbolic model of one-velocity multicomponent heat-conducting medium”, TVT, 47:6 (2009), 905–913 ; High Temperature, 47:6 (2009), 870–878 |
6
|
12. |
V. S. Surov, “The Riemann problem for one-velocity model of multicomponent mixture”, TVT, 47:2 (2009), 283–291 ; High Temperature, 47:2 (2009), 263–271 |
6
|
|
2008 |
13. |
V. S. Surov, “One-velocity model of a heterogeneous medium with a hyperbolic adiabatic kernel”, Zh. Vychisl. Mat. Mat. Fiz., 48:6 (2008), 1111–1125 ; Comput. Math. Math. Phys., 48:6 (2008), 1048–1062 |
23
|
|
2003 |
14. |
V. S. Surov, “Method of the characteristics for calculation of currents of one-speed heterogeneous mixtures in Lagrange variables”, Matem. Mod., 15:5 (2003), 37–46 |
|
2001 |
15. |
V. S. Surov, “One-velocity model of heterogeneous media”, Matem. Mod., 13:10 (2001), 27–42 |
10
|
16. |
V. S. Surov, “Breakup of a discontinuity in dispersed media at a various symmetry of motion”, Matem. Mod., 13:8 (2001), 44–52 |
1
|
|
2000 |
17. |
V. S. Surov, “Flow of Prandtl–Mayer type for a one-velocity model of dispersion medium”, TVT, 38:3 (2000), 491–495 ; High Temperature, 38:3 (2000), 467–471 |
1
|
18. |
V. S. Surov, “Reflection of an air shock wave from a foam layer”, TVT, 38:1 (2000), 101–110 ; High Temperature, 38:1 (2000), 97–105 |
10
|
|
1998 |
19. |
V. S. Surov, “On one modification of the Godunov's method for calculation of onespeed flows of multycomponent composites”, Matem. Mod., 10:3 (1998), 29–38 |
4
|
20. |
V. S. Surov, “The effect of geometric factor on the propagation of shock waves in dispersed media”, TVT, 36:6 (1998), 1001–1004 ; High Temperature, 36:6 (1998), 979–982 |
1
|
21. |
V. S. Surov, “Analysis of wave phenomena in gas–liquid media”, TVT, 36:4 (1998), 624–630 ; High Temperature, 36:4 (1998), 600–606 |
3
|
22. |
V. S. Surov, “Calculation of the flows of one-velocity heterogeneous mixture”, TVT, 36:2 (1998), 272–278 ; High Temperature, 36:2 (1998), 256–262 |
23. |
V. S. Surov, “Breakup of arbitrary discontinuity in a one-velocity heterogeneous mixture of compressible media”, TVT, 36:1 (1998), 157–161 ; High Temperature, 36:1 (1998), 156–159 |
1
|
|
1997 |
24. |
V. S. Surov, “Decay of an arbitrary discontinuity in Rakhmatulin's one-velocity model of a dispersed medium”, Fizika Goreniya i Vzryva, 33:1 (1997), 143–147 ; Combustion, Explosion and Shock Waves, 33:1 (1997), 121–124 |
25. |
V. S. Surov, “Interaction of pressure waves with an inhomogeneous shield of foam”, TVT, 35:1 (1997), 25–30 ; High Temperature, 35:1 (1997), 21–26 |
|
1996 |
26. |
V. S. Surov, “Calculation of the interaction between pressure waves and a target in the presence of a foamy shield”, Fizika Goreniya i Vzryva, 32:6 (1996), 123–128 ; Combustion, Explosion and Shock Waves, 32:6 (1996), 702–706 |
1
|
27. |
V. S. Surov, “A model of a foam”, Fizika Goreniya i Vzryva, 32:2 (1996), 64–67 ; Combustion, Explosion and Shock Waves, 32:2 (1996), 173–175 |
28. |
V. S. Surov, “Propagation of waves in foams”, TVT, 34:2 (1996), 285–292 ; High Temperature, 34:2 (1996), 280–287 |
1
|
|
1995 |
29. |
V. S. Surov, “Comparative analysis of two foam models”, Fizika Goreniya i Vzryva, 31:3 (1995), 22–28 ; Combustion, Explosion and Shock Waves, 31:3 (1995), 291–296 |
3
|
30. |
V. S. Surov, “Numerical modeling of the interaction of a strong shock wave with liquid drops”, Prikl. Mekh. Tekh. Fiz., 36:3 (1995), 38–44 ; J. Appl. Mech. Tech. Phys., 36:3 (1995), 354–359 |
2
|
|
1993 |
31. |
V. S. Surov, V. M. Fomin, “Numerical modeling of the interaction of a water drop with a strong air shock wave”, Prikl. Mekh. Tekh. Fiz., 34:1 (1993), 48–54 ; J. Appl. Mech. Tech. Phys., 34:1 (1993), 45–50 |
2
|
|
1988 |
32. |
V. S. Surov, “Oblique impact of metal plates”, Fizika Goreniya i Vzryva, 24:6 (1988), 115–120 ; Combustion, Explosion and Shock Waves, 24:6 (1988), 747–752 |
1
|
|
|
|
2001 |
33. |
V. S. Surov, “Flow of a one-velocity multicomponent mixture into vacuum”, TVT, 39:1 (2001), 166 ; High Temperature, 39:1 (2001), 162 |
|
2000 |
34. |
V. S. Surov, “Analysis of a one-velocity disperse flow in the vicinity of a cone”, TVT, 38:3 (2000), 528 ; High Temperature, 38:3 (2000), 507 |
35. |
V. S. Surov, “Numerical simulation of breakup of discontinuity in a disperse medium under conditions of varying symmetry of motion”, TVT, 38:2 (2000), 352 ; High Temperature, 38:2 (2000), 333 |
36. |
V. S. Surov, “Singularities of the method of characteristics for a one-velocity model of multicomponent medium”, TVT, 38:1 (2000), 165 ; High Temperature, 38:1 (2000), 161 |
|
Organisations |
|
|
|
|