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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
V. I. Melikhov, O. I. Melikhov, S. E. Yakush, “Thermal interaction of high-temperature melts with liquids”, TVT, 60:2 (2022), 280–318 ; High Temperature, 60:2 (2022), 252–285 |
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2016 |
2. |
O. I. Melikhov, V. I. Melikhov, N. A. Rtishchev, A. E. Tarasov, “Numerical simulation of hydrogen release process upon interaction between zirconium melt and water”, TVT, 54:4 (2016), 553–562 ; High Temperature, 54:4 (2016), 526–535 |
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2014 |
3. |
V. G. Asmolov, V. N. Blinkov, V. I. Melikhov, O. I. Melikhov, Yu. V. Parfenov, D. A. Emelyanov, A. E. Kiselev, K. S. Dolganov, “Current state of system thermohydraulic codes and trends in their development abroad”, TVT, 52:1 (2014), 105–117 ; High Temperature, 52:1 (2014), 98–109 |
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2007 |
4. |
V. I. Melikhov, O. I. Melikhov, Yu. V. Parfenov, S. E. Yakush, “Analysis of the temperature regime of operation of a filtering unit”, Prikl. Mekh. Tekh. Fiz., 48:6 (2007), 92–102 ; J. Appl. Mech. Tech. Phys., 48:6 (2007), 852–860 |
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5. |
V. I. Melikhov, O. I. Melikhov, S. E. Yakush, “VAPEX code-aided analysis of large-scale experiments in corium/water interaction”, TVT, 45:4 (2007), 565–574 ; High Temperature, 45:4 (2007), 509–517 |
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2002 |
6. |
V. I. Melikhov, O. I. Melikhov, S. L. Solov'ev, “Next-Generation Thermal-Hydraulic Code: Present-Day Tendencies for Development”, TVT, 40:5 (2002), 826–842 ; High Temperature, 40:5 (2002), 769–783 |
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7. |
V. I. Melikhov, O. I. Melikhov, A. V. Sokolin, “Melt/Water Explosive Interaction: VAPEX-D Code Simulation”, TVT, 40:3 (2002), 466–474 ; High Temperature, 40:3 (2002), 428–436 |
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1998 |
8. |
G. M. Makhviladze, V. I. Melikhov, O. I. Melikhov, G. I. Sivashinsky, “Localization of combustion in a periodic velocity field”, Fizika Goreniya i Vzryva, 34:3 (1998), 19–28 ; Combustion, Explosion and Shock Waves, 34:3 (1998), 264–272 |
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1996 |
9. |
G. M. Makhviladze, V. I. Melikhov, J. P. Roberts, G. I. Sivashinskii, “Effect of phase velocity nonequilibrium on flame propagation and extinction”, Fizika Goreniya i Vzryva, 32:3 (1996), 11–23 ; Combustion, Explosion and Shock Waves, 32:3 (1996), 251–261 |
10. |
V. I. Melikhov, O. I. Melikhov, B. I. Nigmatulin, Ya. D. Khodzhaev, “Analysis of heating-up and oxidation of fuel assembly under conditions of CORA-W2 experiment”, TVT, 34:6 (1996), 957–964 ; High Temperature, 34:6 (1996), 942–949 |
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1992 |
11. |
G. A. Zulinyan, G. M. Makhviladze, V. I. Melikhov, “Effect of the Lewis number on the flame propagation mechanism”, Fizika Goreniya i Vzryva, 28:6 (1992), 46–51 ; Combustion, Explosion and Shock Waves, 28:6 (1992), 614–619 |
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12. |
G. M. Makhviladze, V. I. Melikhov, “Flame propagation in a horizontal channel with cold side walls in a gravitational field”, Fizika Goreniya i Vzryva, 28:1 (1992), 21–28 ; Combustion, Explosion and Shock Waves, 28:1 (1992), 18–24 |
13. |
G. M. Makhviladze, V. I. Melikhov, “Numerical investigation of flame propagation and extinction in a vertical channel”, Prikl. Mekh. Tekh. Fiz., 33:4 (1992), 18–26 ; J. Appl. Mech. Tech. Phys., 33:4 (1992), 494–500 |
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1991 |
14. |
G. M. Makhviladze, V. I. Melikhov, “Flame propagation in a closed channel with cold side walls”, Fizika Goreniya i Vzryva, 27:2 (1991), 49–58 ; Combustion, Explosion and Shock Waves, 27:2 (1991), 176–183 |
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1989 |
15. |
G. M. Makhviladze, V. I. Melikhov, “A numerical method for the investigation of slow gas combustion”, Matem. Mod., 1:6 (1989), 146–157 |
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1987 |
16. |
G. M. Makhviladze, V. I. Melikhov, O. I. Melikhov, “Flame propagation in an enclosed channel”, Fizika Goreniya i Vzryva, 23:3 (1987), 30–36 ; Combustion, Explosion and Shock Waves, 23:3 (1987), 274–279 |
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