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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
Vasily I. Golubev, Ilia S. Nikitin, Xi Mi, “Numerical schemes of higher approximation orders for dynamic problems of elastoviscoplastic media”, J. Sib. Fed. Univ. Math. Phys., 17:1 (2024), 8–17 |
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2023 |
2. |
I. B. Petrov, V. I. Golubev, A. V. Shevchenko, I. S. Nikitin, “About the boundary condition approximation in the higher-order grid-characteristic schemes”, Dokl. RAN. Math. Inf. Proc. Upr., 514:1 (2023), 52–58 ; Dokl. Math., 108:3 (2023), 466–471 |
1
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3. |
E. K. Guseva, V. I. Golubev, I. B. Petrov, “Linear quasi-monotonous and hybrid grid-characteristic schemes for the numerical solution of linear acoustic problems”, Sib. Zh. Vychisl. Mat., 26:2 (2023), 135–147 |
4. |
V. I. Golubev, I. S. Nikitin, “Refined schemes for computing the dynamics of elastoviscoplastic media”, Zh. Vychisl. Mat. Mat. Fiz., 63:10 (2023), 1674–1686 ; Comput. Math. Math. Phys., 63:10 (2023), 1874–1885 |
2
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5. |
A. V. Shevchenko, V. I. Golubev, “Boundary and contact conditions of higher order of accuracy for grid-characteristic schemes in acoustic problems”, Zh. Vychisl. Mat. Mat. Fiz., 63:10 (2023), 1600–1613 ; Comput. Math. Math. Phys., 63:10 (2023), 1760–1772 |
3
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2022 |
6. |
V. I. Golubev, A. V. Shevchenko, I. B. Petrov, “Raising convergence order of grid-characteristic schemes for 2D linear elasticity problems using operator splitting”, Computer Research and Modeling, 14:4 (2022), 899–910 ; Computer Research and Modeling, 14:4 (2022), e899–e910 |
12
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7. |
I. B. Petrov, V. I. Golubev, Yu. S. Ankipovich, A. V. Favorskaya, “Numerical modeling of acoustic processes in gradient media using the grid-characteristic method”, Dokl. RAN. Math. Inf. Proc. Upr., 507 (2022), 51–56 ; Dokl. Math., 106:3 (2022), 449–453 |
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2021 |
8. |
I. B. Petrov, V. I. Golubev, E. K. Guseva, “Hybrid grid-characteristic schemes for arctic seismic problems”, Dokl. RAN. Math. Inf. Proc. Upr., 501 (2021), 67–73 ; Dokl. Math., 501:3 (2021), 374–379 |
3
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9. |
I. B. Petrov, V. I. Golubev, V. Yu. Petrukhin, I. S. Nikitin, “Simulation of seismic waves in anisotropic media”, Dokl. RAN. Math. Inf. Proc. Upr., 498 (2021), 59–64 ; Dokl. Math., 103:3 (2021), 146–150 |
10
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10. |
Ilia S. Nikitin, Vasily I. Golubev, “Explicit-implicit schemes for calculating the dynamics of layered media with nonlinear conditions at contact boundaries”, J. Sib. Fed. Univ. Math. Phys., 14:6 (2021), 768–778 |
4
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2020 |
11. |
I. B. Petrov, V. I. Golubev, A. V. Shevchenko, “Problem of acoustic diagnostics of a damaged zone”, Dokl. RAN. Math. Inf. Proc. Upr., 492 (2020), 92–96 ; Dokl. Math., 101:3 (2020), 250–253 |
5
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2019 |
12. |
R. A. Bagaev, V. I. Golubev, Yu. A. Golubeva, “Full-wave 3D earthquake simulation using the double-couple model and the grid-characteristic method”, Computer Research and Modeling, 11:6 (2019), 1061–1067 |
1
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13. |
K. A. Beklemysheva, A. V. Vasyukov, V. I. Golubev, I. B. Petrov, “Numerical modeling of seismic influence on underwater composite oil pipeline”, Matem. Mod., 31:1 (2019), 103–113 ; Math. Models Comput. Simul., 11:5 (2019), 715–721 |
5
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2018 |
14. |
V. I. Golubev, N. I. Khokhlov, “Estimation of anisotropy of seismic response from fractured geological objects”, Computer Research and Modeling, 10:2 (2018), 231–240 |
3
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15. |
V. I. Golubev, O. Ya. Voinov, I. B. Petrov, “Seismic imaging of fractured elastic media on the basis of the grid-characteristic method”, Zh. Vychisl. Mat. Mat. Fiz., 58:8 (2018), 113–119 ; Comput. Math. Math. Phys., 58:8 (2018), 1309–1315 |
2
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2017 |
16. |
A. V. Favorskaya, V. I. Golubev, “About applying Rayleigh formula based on the Kirchhoff integral equations for the seismic exploration problems”, Computer Research and Modeling, 9:5 (2017), 761–771 |
1
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17. |
V. I. Golubev, R. I. Gilyazutdinov, I. B. Petrov, N. I. Khokhlov, A. V. Vasyukov, “Simulation of dynamic processes in three-dimensional layered cracked media with the use of the grid-characteristic numerical method”, Prikl. Mekh. Tekh. Fiz., 58:3 (2017), 190–197 ; J. Appl. Mech. Tech. Phys., 58:3 (2017), 539–545 |
8
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2016 |
18. |
V. I. Golubev, I. B. Petrov, N. I. Khokhlov, “Compact grid-characteristic schemes of higher orders for 3D linear transport equation”, Matem. Mod., 28:2 (2016), 123–132 ; Math. Models Comput. Simul., 8:5 (2016), 577–584 |
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2015 |
19. |
A. V. Favorskaya, I. B. Petrov, V. I. Golubev, N. I. Khokhlov, “Numerical simulation of earthquakes' impact on facilities by grid-characteristic method”, Matem. Mod., 27:12 (2015), 109–120 |
4
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20. |
V. I. Golubev, I. B. Petrov, N. I. Khokhlov, “Simulation of seismic processes inside the planet using hybrid grid-characteristic method”, Matem. Mod., 27:2 (2015), 139–148 ; Math. Models Comput. Simul., 7:5 (2015), 439–445 |
7
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21. |
V. I. Golubev, I. B. Petrov, N. I. Khokhlov, K. I. Shul'ts, “Numerical computation of wave propagation in fractured media by applying the grid-characteristic method on hexahedral meshes”, Zh. Vychisl. Mat. Mat. Fiz., 55:3 (2015), 512–522 ; Comput. Math. Math. Phys., 55:3 (2015), 509–518 |
18
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2014 |
22. |
I. B. Petrov, A. V. Favorskaya, N. I. Khokhlov, V. A. Miryaha, A. V. Sannikov, V. I. Golubev, “The monitoring state of a moving train using high performance systems and modern computational methods”, Matem. Mod., 26:7 (2014), 19–32 ; Math. Models Comput. Simul., 7:1 (2015), 51–61 |
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2013 |
23. |
V. I. Golubev, N. I. Khokhlov, “Mathematical modelling of elastic perturbations propagating from the earthquake hypocenter”, Vestn. YuUrGU. Ser. Vych. Matem. Inform., 2:2 (2013), 56–64 |
24. |
V. I. Golubev, I. B. Petrov, N. I. Khokhlov, “Numerical simulation of seismic activity by the grid-characteristic method”, Zh. Vychisl. Mat. Mat. Fiz., 53:10 (2013), 1709–1720 ; Comput. Math. Math. Phys., 53:10 (2013), 1523–1533 |
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2011 |
25. |
V. I. Golubev, I. E. Kvasov, I. B. Petrov, “Influence of natural disasters on ground facilities”, Matem. Mod., 23:8 (2011), 46–54 ; Math. Models Comput. Simul., 4:2 (2012), 129–134 |
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2019 |
26. |
V. I. Golubev, “Алгоритм вычисления остатков”, Kvant, 2019, no. 2, 35–37 |
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2018 |
27. |
V. Glushkov, V. I. Golubev, A. Makarov, “Московский тур Всероссийской студенческой олимпиады по физике 2017 года”, Kvant, 2018, no. 4, 45–46 |
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