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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
M. R. Koroleva, V. A. Tenenev, “Approximate Riemann Solvers for the Soave – Redlich – Kwong Equation of State”, Rus. J. Nonlin. Dyn., 20:3 (2024), 345–359 |
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2023 |
2. |
I. G. Rusyak, V. A. Tenenev, “Methods and algorithms for solving the problem of optimizing the charge design intended to increase the initial velocity of a projectile”, Vestn. Tomsk. Gos. Univ. Mat. Mekh., 2023, no. 82, 161–176 |
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2022 |
3. |
I. G. Rusyak, V. A. Tenenev, V. G. Sufiyanov, D. A. Klyukin, “Simulation of uneven combustion and stress-strain state of powder elements of a tubular charge during firing”, Computer Research and Modeling, 14:6 (2022), 1281–1300 |
1
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4. |
I. G. Rusyak, V. A. Tenenev, S. A. Korolev, “Numerical Simulation of the Nonstationary Process
of the Shot Based on the Navier – Stokes Equations”, Rus. J. Nonlin. Dyn., 18:3 (2022), 333–348 |
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2021 |
5. |
I. G. Rusyak, V. A. Tenenev, “On the issue of numerical modeling of internal ballistics for a tubular charge in a spatial setting”, Computer Research and Modeling, 13:5 (2021), 993–1010 |
1
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6. |
A. S. Shaura, V. A. Tenenev, E. V. Vetchanin, “The Problem of Balancing an Inverted Spherical
Pendulum on an Omniwheel Platform”, Rus. J. Nonlin. Dyn., 17:4 (2021), 507–525 |
7. |
T. Raeder, V. A. Tenenev, A. A. Chernova, “Incorporation of Fluid Compressibility
into the Calculation of the Stationary Mode
of Operation of a Hydraulic Device
at High Fluid Pressures”, Rus. J. Nonlin. Dyn., 17:2 (2021), 195–209 |
8. |
I. G. Rusyak, V. A. Tenenev, “The impact of the dimension of a mathematical model of internal ballistics on design parameters of a shot for grain gunpowder charges”, Vestn. Tomsk. Gos. Univ. Mat. Mekh., 2021, no. 73, 95–110 |
2
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2020 |
9. |
I. G. Rusyak, V. A. Tenenev, “Modeling of ballistics of an artillery shot taking into account the spatial distribution of parameters and backpressure”, Computer Research and Modeling, 12:5 (2020), 1123–1147 |
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10. |
T. Raeder, V. A. Tenenev, A. A. Chernova, “Numerical simulation of unstable safety valve modes”, Vestn. Tomsk. Gos. Univ. Mat. Mekh., 2020, no. 68, 141–157 |
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2019 |
11. |
S. A. Korolev, A. M. Lipanov, I. G. Rusyak, V. A. Tenenev, “Development of the approaches for solving an inverse problem of external ballistics in various application conditions”, Vestn. Tomsk. Gos. Univ. Mat. Mekh., 2019, no. 57, 76–83 |
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2018 |
12. |
M. R. Koroleva, O. V. Mishchenkova, T. Raeder, V. A. Tenenev, A. A. Chernova, “Numerical simulation of the process of activation of the safety valve”, Computer Research and Modeling, 10:4 (2018), 495–509 |
6
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13. |
A. A. Kilin, A. I. Klenov, V. A. Tenenev, “Controlling the movement of the body using internal masses in a viscous liquid”, Computer Research and Modeling, 10:4 (2018), 445–460 |
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14. |
I. S. Mamaev, V. A. Tenenev, E. V. Vetchanin, “Dynamics of a Body with a Sharp Edge in a Viscous Fluid”, Nelin. Dinam., 14:4 (2018), 473–494 |
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2017 |
15. |
E. V. Vetchanin, V. A. Tenenev, A. A. Kilin, “Optimal control of the motion in an ideal fluid of a screw-shaped body with internal rotors”, Computer Research and Modeling, 9:5 (2017), 741–759 |
2
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2016 |
16. |
V. A. Tenenev, E. V. Vetchanin, L. Ilaletdinov, “Chaotic dynamics in the problem of the fall of a screw-shaped body in a fluid”, Nelin. Dinam., 12:1 (2016), 99–120 |
6
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17. |
A. V. Borisov, S. P. Kuznetsov, I. S. Mamaev, V. A. Tenenev, “Describing the motion of a body with an elliptical cross section in a viscous uncompressible fluid by model equations reconstructed from data processing”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:17 (2016), 9–19 ; Tech. Phys. Lett., 42:9 (2016), 886–890 |
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2015 |
18. |
A. M. Lipanov, A. V. Vakhrushev, V. A. Tenenev, A. Yu. Fedotov, “Mathematical simulation of the dynamic interaction of solids. Part 2. The simulation of physical destruction of bodies”, CPM, 17:1 (2015), 73–80 |
19. |
V. A. Tenenev, I. G. Rusyak, V. G. Sufiyanov, M. A. Ermolaev, D. G. Nefedov, “Construction of approximate mathematical models on results of numerical experiments”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 8:1 (2015), 76–87 |
2
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2014 |
20. |
Alexey V. Borisov, Alexander A. Kilin, Ivan S. Mamaev, Valentin A. Tenenev, “The dynamics of vortex rings: leapfrogging in an ideal and viscous fluid”, Fluid Dyn. Res., 46:3 (2014), 31415–16 |
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2013 |
21. |
E. V. Vetchanin, V. A. Tenenev, A. S. Shaura, “Motion control of a rigid body in viscous fluid”, Computer Research and Modeling, 5:4 (2013), 659–675 |
22. |
Evgeny V. Vetchanin, Ivan S. Mamaev, Valentin A. Tenenev, “The Self-propulsion of a Body with Moving Internal Masses in a Viscous Fluid”, Regul. Chaotic Dyn., 18:1-2 (2013), 100–117 |
33
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2012 |
23. |
Evgeny V. Vetchanin, Ivan S. Mamaev, Valentin A. Tenenev, “The motion of a body with variable mass geometry in a viscous fluid”, Nelin. Dinam., 8:4 (2012), 815–836 |
6
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24. |
Sergey M. Ramodanov, Valentin A. Tenenev, Dmitrii V. Treschev, “Self-propulsion of a body with rigid surface and variable coefficient of lift in a perfect fluid”, Nelin. Dinam., 8:4 (2012), 799–813 |
3
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25. |
Sergey M. Ramodanov, Valentin A. Tenenev, Dmitry V. Treschev, “Self-propulsion of a Body with Rigid Surface and Variable Coefficient of Lift in a Perfect Fluid”, Regul. Chaotic Dyn., 17:6 (2012), 547–558 |
21
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2011 |
26. |
E. V. Vetchanin, V. A. Tenenev, “Motion control simulating in a viscous liquid of a body with variablegeometry of weights”, Computer Research and Modeling, 3:4 (2011), 371–381 |
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27. |
S. M. Ramodanov, V. A. Tenenev, “Motion of a body with variable distribution of mass in a boundless viscous liquid”, Nelin. Dinam., 7:3 (2011), 635–647 |
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2006 |
28. |
S. V. Dmitriev, V. A. Tenenev, “Optimization of multiextreme functions by means of hybrid genetic algorithms”, Izv. IMI UdGU, 2006, no. 2(36), 163–166 |
1
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29. |
M. S. Vologdina, V. A. Tenenev, “Mathematical model of gas dynamics in heater with $W$ form”, Izv. IMI UdGU, 2006, no. 2(36), 151–154 |
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2001 |
30. |
B. Ya. Bendersky, V. A. Teneev, “Spatial subsonic flows in areas with composite geometry”, Mat. Model., 13:8 (2001), 121–127 |
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1997 |
31. |
V. A. Teneev, I. G. Rusyak, M. M. Gorohov, “Numerical solution of a combustion problem for aluminium particles in two-phase stream”, Mat. Model., 9:5 (1997), 87–96 |
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2021 |
32. |
T. Raeder, V. A. Tenenev, M. R. Koroleva, O. V. Mishchenkova, “Nonlinear Processes in Safety Systems for Substances
with Parameters Close to a Critical State”, Rus. J. Nonlin. Dyn., 17:1 (2021), 119–138 |
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Organisations |
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