Publications in Math-Net.Ru |
|
2018 |
1. |
M. N. Petrov, A. A. Tambova, V. A. Titarev, S. V. Utyuzhnikov, A. V. Chikitkin, “FlowModellium software package for calculating high-speed flows of compressible fluid”, Zh. Vychisl. Mat. Mat. Fiz., 58:11 (2018), 1932–1954 ; Comput. Math. Math. Phys., 58:11 (2018), 1865–1886 |
|
2017 |
2. |
M. N. Petrov, V. A. Titarev, S. V. Utyuzhnikov, A. V. Chikitkin, “A multithreaded OpenMP implementation of the LU-SGS method using the multilevel decomposition of the unstructured computational mesh”, Zh. Vychisl. Mat. Mat. Fiz., 57:11 (2017), 1895–1905 ; Comput. Math. Math. Phys., 57:11 (2017), 1856–1865 |
|
2016 |
3. |
A. V. Astanin, A. D. Dashkevich, I. B. Petrov, M. N. Petrov, S. V. Utyuzhnikov, N. I. Khokhlov, “Modeling the influence of the Chelyabinsk meteorite's bow shock wave on the Earth surface”, Matem. Mod., 28:8 (2016), 33–45 ; Math. Models Comput. Simul., 9:2 (2017), 133–141 |
4. |
V. A. Titarev, S. V. Utyuzhnikov, A. V. Chikitkin, “OpenMP + MPI parallel implementation of a numerical method for solving a kinetic equation”, Zh. Vychisl. Mat. Mat. Fiz., 56:11 (2016), 1949–1959 ; Comput. Math. Math. Phys., 56:11 (2016), 1919–1928 |
|
2013 |
5. |
V. S. Ryaben'kii, S. V. Utyuzhnikov, “An algorithm of computing solution of the model difference problem with boundary conditions on the cut on the base of potential with the density from the space of jumps”, Keldysh Institute preprints, 2013, 093, 15 pp. |
6. |
V. A. Titarev, S. V. Utyuzhnikov, E. M. Shakhov, “Rarefied gas flow through a pipe of variable square cross section into vacuum”, Zh. Vychisl. Mat. Mat. Fiz., 53:8 (2013), 1402–1411 ; Comput. Math. Math. Phys., 53:8 (2013), 1221–1230 |
7. |
M. Dumbser, V. A. Titarev, S. V. Utyuzhnikov, “Implicit multiblock method for solving a kinetic equation on unstructured meshes”, Zh. Vychisl. Mat. Mat. Fiz., 53:5 (2013), 767–782 ; Comput. Math. Math. Phys., 53:5 (2013), 601–615 |
|
2002 |
8. |
V. A. Gal'burt, M. F. Ivanov, V. N. Mineev, V. E. Fortov, A. I. Funtikov, S. V. Utyuzhnikov, A. V. Shutov, “Action of hydrogen explosion on reactor hall safety containment”, Matem. Mod., 14:1 (2002), 73–86 |
9. |
D. V. Rudenko, S. V. Utyuzhnikov, “Use of dynamically adaptive grids for modeling three-dimensional unsteady gas flows with high gradients”, Zh. Vychisl. Mat. Mat. Fiz., 42:3 (2002), 395–409 ; Comput. Math. Math. Phys., 42:3 (2002), 377–390 |
|
1999 |
10. |
D. V. Rudenko, S. V. Utyuzhnikov, “Gasdynamical consequences of the explosion of the tunguska cosmic body”, Matem. Mod., 11:10 (1999), 49–61 |
11. |
A. V. Konyukhov, M. V. Meshcherjakov, S. V. Utyuzhnikov, “Numerical simulation of the processes of propagation of impurity from a large-scale source in the atmosphere”, TVT, 37:6 (1999), 904–911 ; High Temperature, 37:6 (1999), 873–879 |
|
1997 |
12. |
I. F. Muzafarov, S. V. Utyuzhnikov, “Application of compact finite-difference schemes to the initial boundary value problem for a hyperbolic system of equations”, Zh. Vychisl. Mat. Mat. Fiz., 37:3 (1997), 302–309 ; Comput. Math. Math. Phys., 37:3 (1997), 299–306 |
|
1996 |
13. |
S. V. Utyuzhnikov, N. K. Yamaleev, “Three-dimensional supersonic turbulent flow about bodies at small angles of attack”, TVT, 34:4 (1996), 567–572 ; High Temperature, 34:4 (1996), 562–567 |
|
1995 |
14. |
A. V. Konyukhov, M. V. Meshcherjakov, S. V. Utyuzhnikov, “Numerical investigation of flow initiated in the atmosphere by a turbulent durface thermal”, TVT, 33:5 (1995), 726–730 ; High Temperature, 33:5 (1995), 720–724 |
15. |
I. F. Muzafarov, S. V. Utyuzhnikov, “Numerical modeling of convective columns above a large fire in the atmosphere”, TVT, 33:4 (1995), 594–601 ; High Temperature, 33:4 (1995), 588–595 |
16. |
D. Kh. Gan'zha, I. F. Muzafarov, S. V. Utyuzhnikov, “Application of moving adaptive grids in algorithms with compact approximations”, Zh. Vychisl. Mat. Mat. Fiz., 35:8 (1995), 1184–1194 ; Comput. Math. Math. Phys., 35:8 (1995), 949–957 |
|
1994 |
17. |
B. A. Klumov, V. I. Kondaurov, A. V. Konyukhov, M. V. Meshcherjakov, S. V. Utyuzhnikov, V. E. Fortov, “Numerical simulations of the long living consequences of a comet Shoemaker-Levy-9 impact with Jupiter”, Dokl. Akad. Nauk, 337:1 (1994), 28–35 |
18. |
V. U. Nabiev, S. V. Utyuzhnikov, N. K. Yamaleev, “An efficient method to determine the ballistic trajectory of an axisymmetric body moving
with a hypersonic velocity in the stratified atmosphere”, Dokl. Akad. Nauk, 336:3 (1994), 357–360 |
19. |
N. N. Pilyugin, R. F. Talipov, G. A. Tirskii, S. V. Utyuzhnikov, “Calculation of supersonic turbulent flow past blunt bodies using complete equations for the viscous shock layer”, TVT, 32:2 (1994), 242–248 ; High Temperature, 32:2 (1994), 229–234 |
20. |
A. V. Konyukhov, M. V. Meshcherjakov, S. V. Utyuzhnikov, “Motion of a large-scale turbulent thermal in a stratified atmosphere”, TVT, 32:2 (1994), 236–241 ; High Temperature, 32:2 (1994), 224–228 |
21. |
B. A. Klumov, V. I. Kondaurov, A. V. Konyukhov, Yu. D. Medvedev, A. G. Sokolskii, S. V. Utyuzhnikov, V. E. Fortov, “Collision of comet Shoemaker—Levi 9 with Jupiter: what shall we see?”, UFN, 164:6 (1994), 617–629 ; Phys. Usp., 37:6 (1994), 577–588 |
|
1993 |
22. |
I. F. Muzafarov, S. V. Utyuzhnikov, “Application of compact difference schemes to investigation of unstationary gas flows”, Matem. Mod., 5:3 (1993), 74–83 |
|
1992 |
23. |
S. V. Utyuzhnikov, N. K. Yamaleev, “Global iterations method for solution of viscous shock layer equations in the symmetry plane of body at angle of attack”, Matem. Mod., 4:10 (1992), 88–100 |
24. |
I. F. Muzafarov, G. A. Tirskii, S. V. Utyuzhnikov, N. K. Yamaleev, “Numerical simulation of viscous flow over body flying through the cloud of hot gas”, Matem. Mod., 4:9 (1992), 55–68 |
|
1987 |
25. |
S. A. Vasil'evskii, G. A. Tirskii, S. V. Utyuzhnikov, “A numerical method for solving the equations of a viscous shock layer”, Zh. Vychisl. Mat. Mat. Fiz., 27:5 (1987), 741–750 ; U.S.S.R. Comput. Math. Math. Phys., 27:3 (1987), 64–71 |
|
1986 |
26. |
S. A. Vasil'evskii, G. A. Tirskii, S. V. Utyuzhnikov, “Numerical method of solving the full viscous
shock-layer equations”, Dokl. Akad. Nauk SSSR, 290:5 (1986), 1058–1062 |
|