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Publications in Math-Net.Ru |
Citations |
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2025 |
| 1. |
S. V. Golovastov, G. D. Rublev, G. Yu. Bivol, A. N. Parshikov, V. V. Golub, “Interaction of a shock wave with a quartz sand partition”, Zhurnal Tekhnicheskoi Fiziki, 95:4 (2025), 677–685 |
| 2. |
V. V. Volodin, V. V. Golub, N. K. Dentsel, “Экспериментальное исследование фронта сферически расширяющегося пламени”, TVT, 63:6 (2025), 743–749 |
| 3. |
G. Yu. Bivol, S. V. Golovastov, V. V. Golub, “Распространение и распад детонации в канале субкритического сечения с шероховатыми стенками”, TVT, 63:4 (2025), 548–556 |
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2024 |
| 4. |
G. Yu. Bivol, S. V. Golovastov, F. S. Kuleshov, V. V. Golub, “Infrared registration of the flame front of a hydrogen-air mixture propagating in porous copper”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 50:13 (2024), 8–11 |
| 5. |
S. V. Golovastov, G. Yu. Bivol, F. S. Kuleshov, V. V. Golub, “Self-ignition of hydrogen-air mixture during the interaction of a shock wave with a destructible granular screen or permeable wall”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 50:5 (2024), 43–46 |
| 6. |
V. V. Volodin, V. V. Golub, A. E. Eyanov, “Исследование распространения водородно-воздушного пламени в плоском зазоре методом инфракрасной визуализации”, TVT, 62:3 (2024), 425–431 |
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2022 |
| 7. |
V. V. Volodin, V. V. Golub, A. E. Eyanov, “Influence of acoustic oscillations on the speed of a cellular hydrogen-air flame in a horizontal channel”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 48:9 (2022), 41–43 |
| 8. |
V. V. Volodin, V. V. Golub, A. E. Eyanov, “Combustion of hydrogen–air mixtures in a tube with annular ignition”, TVT, 60:6 (2022), 957–960 ; High Temperature, 60:6 (2022), 888–891 |
3
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2021 |
| 9. |
V. V. Volodin, V. V. Golub, A. E. Eyanov, “The effect of initial conditions on the laminar flame front velocity in gas mixtures”, Zhurnal Tekhnicheskoi Fiziki, 91:2 (2021), 247–254 ; Tech. Phys., 66:2 (2021), 235–242 |
3
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| 10. |
V. M. Bocharnikov, V. V. Golub, A. S. Savel'ev, “The rise of forces on a wedge during the interaction of a sliding discharge with a supersonic flow”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:9 (2021), 33–36 ; Tech. Phys. Lett., 47:6 (2021), 436–439 |
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2020 |
| 11. |
V. M. Bocharnikov, V. V. Volodin, V. V. Golub, I. V. Trifanov, D. G. Serebryakov, “Resonance properties of a low-pressure dielectric barrier discharge”, Zhurnal Tekhnicheskoi Fiziki, 90:12 (2020), 2060–2065 ; Tech. Phys., 65:12 (2020), 1969–1974 |
1
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| 12. |
O. A. Mirova, T. V. Bazhenova, V. V. Golub, “Effect of a granulated-material screen on the multiple reflection of a plane shock wave inside a closed volume”, TVT, 58:1 (2020), 144–147 ; High Temperature, 58:1 (2020), 140–143 |
3
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2019 |
| 13. |
V. M. Bocharnikov, I. V. Trifanov, V. V. Golub, “Thrust-energy characteristics of plasma actuators at various pressures”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:2 (2019), 33–35 ; Tech. Phys. Lett., 45:1 (2019), 31–33 |
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2018 |
| 14. |
V. V. Golub, A. D. Kiverin, T. D. Sadokhina, I. S. Yakovenko, “Generation of directed microparticle flows by burning gaseous fuel in a nonstationary mode”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 44:22 (2018), 87–94 ; Tech. Phys. Lett., 44:11 (2018), 1038–1041 |
1
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2017 |
| 15. |
S. V. Golovastov, A. Yu. Mikushkin, V. V. Golub, “Deflagration-to-detonation transition in spiral channels”, Zhurnal Tekhnicheskoi Fiziki, 87:10 (2017), 1489–1492 ; Tech. Phys., 62:10 (2017), 1496–1499 |
3
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| 16. |
G. Yu. Bivol, S. V. Golovastov, V. V. Golub, “Formation of an overdriven detonation wave in the flow of methane–oxygen mixtures in a variable cross section channel”, TVT, 55:4 (2017), 576–581 ; High Temperature, 55:4 (2017), 561–566 |
11
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| 17. |
O. A. Mirova, A. L. Kotel'nikov, V. V. Golub, T. V. Bazhenova, “Multiple shock wave reflections at an explosion in a closed volume with shielded walls”, TVT, 55:2 (2017), 324–326 ; High Temperature, 55:2 (2017), 315–317 |
7
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2016 |
| 18. |
V. M. Bocharnikov, V. V. Volodin, V. V. Golub, “Optimizing the efficiency of dielectric barrier discharge for creating synthetic jets”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:7 (2016), 31–36 ; Tech. Phys. Lett., 42:4 (2016), 351–353 |
2
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| 19. |
O. A. Mirova, A. L. Kotel'nikov, V. V. Golub, T. V. Bazhenova, “Protecting shield influence on pressure decrease at shock wave interaction with the wall”, TVT, 54:6 (2016), 963–964 ; High Temperature, 54:6 (2016), 905–906 |
5
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| 20. |
O. A. Mirova, A. L. Kotel'nikov, V. V. Golub, T. V. Bazhenova, A. N. Parshikov, “Effect of the expansion velocity of material of a sand protective screen on the attenuation of a shock wave reflected from this screen”, TVT, 54:5 (2016), 761–766 ; High Temperature, 54:5 (2016), 716–721 |
3
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2015 |
| 21. |
G. Yu. Bivol, S. V. Golovastov, V. V. Golub, “Propagation of detonation wave in hydrogen–air mixture in channels with sound-absorbing surfaces”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 41:24 (2015), 17–22 ; Tech. Phys. Lett., 41:12 (2015), 1167–1169 |
5
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| 22. |
V. V. Volodin, A. E. Korobov, S. V. Golovastov, V. V. Golub, “The effect of reflected acoustic disturbances on flame front acceleration”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 41:21 (2015), 60–65 ; Tech. Phys. Lett., 41:11 (2015), 1051–1053 |
2
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| 23. |
V. V. Golub, E. V. Gurentsov, A. V. Emelianov, A. V. Eremin, V. E. Fortov, “Energy gain of the detonation pyrolysis of acetylene”, TVT, 53:3 (2015), 383–389 ; High Temperature, 53:3 (2015), 363–369 |
15
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| 24. |
O. A. Mirova, A. L. Kotel'nikov, V. V. Golub, T. V. Bazhenova, “Shock wave effect on protective sand screens of different thicknesses”, TVT, 53:1 (2015), 145–147 ; High Temperature, 53:1 (2015), 155–157 |
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2014 |
| 25. |
V. V. Golub, M. F. Ivanov, A. D. Kiverin, I. S. Yakovenko, “Detonation-induced implantation of microparticles into a substrate”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 40:20 (2014), 88–95 ; Tech. Phys. Lett., 40:10 (2014), 926–929 |
4
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| 26. |
V. M. Bocharnikov, V. V. Golub, “The effect of electrode material on the efficiency of dielectric barrier discharge”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 40:18 (2014), 97–101 ; Tech. Phys. Lett., 40:9 (2014), 822–823 |
1
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| 27. |
V. M. Bocharnikov, N. V. Semin, A. S. Savel'ev, M. S. Krivokorytov, V. V. Golub, “Formation of a synthetic jet based on a dielectric barrier discharge”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 40:14 (2014), 47–52 ; Tech. Phys. Lett., 40:7 (2014), 606–608 |
1
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| 28. |
D. A. Lenkevich, S. V. Golovastov, V. V. Golub, V. M. Bocharnikov, G. Yu. Bivol, “Parametric investigation of the propagation of detonation in narrow channels filled with a propan–butan–oxygen mixture”, TVT, 52:6 (2014), 916–920 ; High Temperature, 52:6 (2014), 890–894 |
6
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| 29. |
A. L. Kotel'nikov, O. A. Mirova, V. V. Golub, T. V. Bazhenova, D. A. Lenkevich, “Study of an interaction of a blast wave with a destructible screen made of a granular material”, TVT, 52:5 (2014), 739–745 ; High Temperature, 52:5 (2014), 708–714 |
7
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| 30. |
M. S. Krivokorytov, V. V. Golub, I. A. Moralev, V. V. Volodin, “Experimental Study of the Development of a Helium Jet during Acoustic Action”, TVT, 52:3 (2014), 450–455 ; High Temperature, 52:3 (2014), 438–442 |
5
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2013 |
| 31. |
M. S. Krivokorytov, V. V. Golub, I. A. Moralev, “The evolution of instabilities in gas microjets under acoustic action”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 39:18 (2013), 38–44 ; Tech. Phys. Lett., 39:9 (2013), 814–817 |
11
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| 32. |
T. V. Bazhenova, D. I. Baklanov, V. V. Golub, K. V. Ivanov, M. S. Krivokorytov, “Liquid drop ejection from a membrane driven by gas detonation products”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 39:3 (2013), 49–55 ; Tech. Phys. Lett., 39:2 (2013), 164–167 |
| 33. |
V. V. Golub, T. V. Bazhenova, D. I. Baklanov, K. V. Ivanov, M. S. Krivokorytov, “Using of hydrogen-air mixture detonation in needle-free injection devices”, TVT, 51:1 (2013), 147–150 ; High Temperature, 51:1 (2013), 138–140 |
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2012 |
| 34. |
M. S. Krivokorytov, V. V. Golub, V. V. Volodin, “The effect of acoustic oscillations on diffusion combustion of methane”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 38:10 (2012), 57–63 ; Tech. Phys. Lett., 38:5 (2012), 478–480 |
11
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| 35. |
T. V. Bazhenova, V. V. Golub, O. A. Mirova, A. L. Kotelnikov, D. A. Lenkevich, “Attenuation of impact of the reflected shock wave upon an explosion inside a vessel with granular material walls”, TVT, 50:3 (2012), 476–479 ; High Temperature, 50:3 (2012), 447–450 |
13
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| 36. |
D. I. Baklanov, V. V. Golub, K. V. Ivanov, M. S. Krivokorytov, “Transition of combustion into detonation within a channel with the diameter less than the critical diameter of the existence of stationary detonation”, TVT, 50:2 (2012), 258–263 ; High Temperature, 50:2 (2012), 238–243 |
10
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2011 |
| 37. |
N. V. Semin, V. V. Golub, G. E. Elsinga, J. Westerweel, “Laminar superlayer in a turbulent boundary layer”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 37:24 (2011), 26–34 ; Tech. Phys. Lett., 37:12 (2011), 1154–1157 |
15
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| 38. |
S. A. Agibalova, V. V. Golub, I. A. Moralev, A. S. Savel'ev, “Effect of dielectric barrier discharge on wing-tip vortex formation”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 37:22 (2011), 61–68 ; Tech. Phys. Lett., 37:11 (2011), 1070–1073 |
3
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2010 |
| 39. |
V. V. Golub, A. S. Savel'ev, “Vortex flow formation during dielectric barrier discharge initiation in quiescent air”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 36:21 (2010), 10–16 ; Tech. Phys. Lett., 36:11 (2010), 978–980 |
| 40. |
V. S. Aksenov, V. V. Golub, S. A. Gubin, A. S. Savel'ev, V. A. Sechenov, É. E. Son, “Сверхзвуковое обтекание воздухом профиля крыла при инициировании скользящего разряда на его поверхности”, TVT, 48:supplementary issue (2010), 93–101 |
2
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| 41. |
V. V. Golub, A. S. Savel'ev, V. A. Sechenov, É. E. Son, D. V. Tereshonok, “Plasma aerodynamics in a supersonic gas flow”, TVT, 48:6 (2010), 948–955 ; High Temperature, 48:6 (2010), 903–909 |
26
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| 42. |
V. V. Golub, D. I. Baklanov, S. V. Golovastov, K. V. Ivanov, M. F. Ivanov, A. D. Kiverin, V. V. Volodin, “Influence of an acoustic field on flame development and transition to detonation”, TVT, 48:6 (2010), 901–907 ; High Temperature, 48:6 (2010), 860–865 |
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2009 |
| 43. |
V. V. Golub, T. V. Bazhenova, I. N. Laskin, N. V. Semin, “Diffusive self-ignition of hydrogen upon efflux from a nozzle array”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 35:5 (2009), 8–13 ; Tech. Phys. Lett., 35:3 (2009), 200–202 |
5
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| 44. |
V. V. Golub, M. F. Ivanov, V. V. Volodin, D. V. Blagodatskikh, S. V. Golovastov, “The impact made by acoustic waves on the ignition zone and the transition of combustion to detonation: Experiment and numerical simulation”, TVT, 47:2 (2009), 315–316 ; High Temperature, 47:2 (2009), 296–298 |
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2007 |
| 45. |
T. V. Bazhenova, M. V. Bragin, V. V. Golub, M. F. Ivanov, “The shock-wave mechanism of spontaneous ignition of hydrogen under conditions of sudden efflux from reservoir at high pressure”, TVT, 45:5 (2007), 733–740 ; High Temperature, 45:5 (2007), 665–672 |
14
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2004 |
| 46. |
T. V. Bazhenova, V. V. Golub, A. L. Kotel'nikov, A. S. Chizhikov, M. V. Bragin, S. B. Shcherbak, “Increasing the force with which a shock discharged from the acts on an
obstacle by way of converting a normal pressure shock to a system of oblique shocks”, TVT, 42:6 (2004), 900–907 ; High Temperature, 42:6 (2004), 911–918 |
2
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2003 |
| 47. |
T. V. Bazhenova, V. V. Golub, “Use of gas detonation in a controlled frequency mode (review)”, Fizika Goreniya i Vzryva, 39:4 (2003), 3–21 ; Combustion, Explosion and Shock Waves, 39:4 (2003), 365–381 |
22
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| 48. |
T. A. Bormotova, V. V. Volodin, V. V. Golub, I. N. Laskin, “The thermal correction of the inlet diffuser of a hypersonic scramjet engine”, TVT, 41:3 (2003), 472–474 ; High Temperature, 41:3 (2003), 415–416 |
1
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2002 |
| 49. |
T. V. Bazhenova, T. A. Bormotova, V. V. Golub, A. L. Kotel'nikov, A. S. Chizhikov, S. B. Shcherbak, “Three-Dimensional Effects and the Interaction between an Obstacle and a Shock Wave Discharged from a Channel”, TVT, 40:2 (2002), 250–255 ; High Temperature, 40:2 (2002), 222–227 |
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2001 |
| 50. |
T. V. Bazhenova, V. V. Golub, T. A. Bormotova, S. A. Novikov, S. B. Shcherbak, “Flow expansion behind a shock wave discharged from a channel”, TVT, 39:1 (2001), 123–127 ; High Temperature, 39:1 (2001), 119–123 |
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1988 |
| 51. |
A. B. Britan, Yu. I. Grin', V. V. Golub, I. A. Oraevskii, V. G. Testov, A. N. Khmelevskiĭ, “Effect of outflow conditions on the characteristics of N$_2$O-GDL”, Fizika Goreniya i Vzryva, 24:1 (1988), 61–65 ; Combustion, Explosion and Shock Waves, 24:1 (1988), 55–59 |
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1982 |
| 52. |
V. V. Golub, V. V. Grigoriev, Yu. I. Grin', S. N. Isakov, I. M. Naboko, R. L. Petrov, V. G. Testov, “Investigation of jet flow past slotted and wedge-shaped nozzles in a shock tube”, Prikl. Mekh. Tekh. Fiz., 23:6 (1982), 76–80 ; J. Appl. Mech. Tech. Phys., 23:6 (1982), 803–807 |
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1979 |
| 53. |
V. A. Belavin, V. V. Golub, I. M. Naboko, “Structure of pulsed gas jets flowing out of supersonic nozzles”, Prikl. Mekh. Tekh. Fiz., 20:1 (1979), 56–65 ; J. Appl. Mech. Tech. Phys., 20:1 (1979), 43–49 |
4
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1976 |
| 54. |
V. V. Golub, I. M. Naboko, A. A. Kulikovskii, “Study of three-dimensional wave structure of nonstationary gas outflow from a planar sonic nozzle”, Prikl. Mekh. Tekh. Fiz., 17:1 (1976), 41–45 ; J. Appl. Mech. Tech. Phys., 17:1 (1976), 32–35 |
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1974 |
| 55. |
I. M. Naboko, E. M. Kudryavtsev, A. I. Opara, V. V. Golub, “Структура потока ударно-нагретого газа в условиях импульсного газодинамического лазера”, TVT, 12:1 (1974), 122–127 |
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1973 |
| 56. |
V. A. Belavin, V. V. Golub, I. M. Naboko, A. I. Opara, “Investigation of unsteady flow structure during discharge of a shock-heated gas”, Prikl. Mekh. Tekh. Fiz., 14:5 (1973), 34–40 ; J. Appl. Mech. Tech. Phys., 14:5 (1973), 630–635 |
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| 57. |
V. M. Bocharnikov, V. V. Golub, A. E. Eyanov, Yu. V. Zhilin, A. Yu. Mikushkin, O. A. Mirova, “Экспериментальное исследование ослабления ударных волн перфорированными пластинами”, TVT, 0 |
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1997 |
| 58. |
T. V. Bazhenova, S. B. Bazarov, V. V. Golub, A. M. Shul'meister, T. A. Bormotova, “Shock wave diffraction from a square channel”, TVT, 35:2 (1997), 352 ; High Temperature, 35:2 (1997), 350 |
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