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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
V. V. Gorskii, “Single-layer algebraic model of apparent turbulent viscosity and modified effective length method”, TVT, 60:5 (2022), 708–714 ; High Temperature, 60:5 (2022), 645–651 |
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2. |
V. V. Gorskii, “On the physical interpretation of the process of recombination of the atomic components of a gas mixture on the surface of structural materials”, TVT, 60:1 (2022), 125–130 ; High Temperature, 60:1 (2022), 113–117 |
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2020 |
3. |
V. V. Gorskii, “Calculation-theoretical model of the ablation of the mass of carbon heat-shielding materials in oxidating gas flows”, TVT, 58:2 (2020), 249–255 ; High Temperature, 58:2 (2020), 232–237 |
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2019 |
4. |
V. V. Gorskii, A. A. Dmitrieva, A. A. Olenicheva, “Paradox in the sublimation mode of the ablation of carbon material in the high-entalpy jet of an aerodynamic facility”, TVT, 57:6 (2019), 914–918 ; High Temperature, 57:6 (2019), 904–908 |
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2018 |
5. |
V. V. Gorskii, A. A. Olenicheva, “On the relevance of practical application of numerical-theoretical models of oxidation of a carbon material in gas flows”, TVT, 56:2 (2018), 277–281 ; High Temperature, 56:2 (2018), 270–274 |
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2017 |
6. |
V. V. Gorskii, M. G. Kovalsky, “Techniques for numerical simulation flow around an axisymmetric blunt body in an underexpanded jet of liquid rocket engine combustion products”, Mat. Mod. Chisl. Met., 2017, no. 14, 65–80 |
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2015 |
7. |
V. V. Gorskii, M. A. Pugach, “Comparison of calculated and experimental data on laminar–turbulant heat transfer on the hemisphere surface streamlined by a supersonic air flow”, TVT, 53:2 (2015), 231–235 ; High Temperature, 53:2 (2015), 223–227 |
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2014 |
8. |
V. V. Gorskii, V. A. Sysenko, “Simulation of gas flow through the laminar boundary layer on the hemisphere surface in a supersonic air flow”, Mat. Mod. Chisl. Met., 2014, no. 4, 88–94 |
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9. |
V. V. Gorskii, A. V. Zaprivoda, “Application of the Complete Thermochemical Model of Carbon Destruction to the Problem of Destruction of Carbon-Fiber Reinforced Plastic Material under Transient Heating”, TVT, 52:2 (2014), 240–245 ; High Temperature, 52:2 (2014), 230–234 |
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10. |
V. V. Gorskii, I. M. Evdokimov, A. V. Zaprivoda, V. G. Resh, “Radiation heat flux attenuation by material vapors during laser cutting of glass-reinforced plastic”, TVT, 52:1 (2014), 126–130 ; High Temperature, 52:1 (2014), 117–120 |
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2013 |
11. |
V. V. Gorskii, A. V. Zaprivoda, “Application of data on effective enthalpy of heat-resistant materials obtained under quasi-stationary conditions for nonstationary problems of thermal conductivity”, TVT, 51:6 (2013), 842–847 ; High Temperature, 51:6 (2013), 764–768 |
12. |
V. V. Gorskii, A. F. Alekseyev, V. A. Sysenko, “Ambiguity of the mechanism of thermochemical destruction of thermoplastic heat-protecting materials”, TVT, 51:4 (2013), 586–591 ; High Temperature, 51:4 (2013), 526–531 |
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13. |
V. V. Gorskii, A. V. Zaprivoda, “Модифицированный метод сплайновой аппроксимации для функции нескольких переменных”, Zh. Vychisl. Mat. Mat. Fiz., 53:4 (2013), 634–638 |
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2012 |
14. |
V. V. Gorskii, A. N. Gordeev, T. I. Dudkina, “Aerothermochemical destruction of silicon carbide washed by a high-temperature flow of air”, TVT, 50:5 (2012), 692–699 ; High Temperature, 50:5 (2012), 646–652 |
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15. |
V. V. Gorskii, F. V. Zlonkevich, “Studies of thermal destruction of fiberglass plastics under the action of a radiation thermal load”, TVT, 50:4 (2012), 596–599 ; High Temperature, 50:4 (2012), 556–559 |
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16. |
V. V. Gorsky, D. A. Zabarko, A. A. Olenicheva, “Investigation of the mass loss of a carbon material within the framework of a complete thermochemical model of its destruction in the case of equilibrium chemical reactions in the boundary layer”, TVT, 50:2 (2012), 307–312 ; High Temperature, 50:2 (2012), 286–291 |
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2011 |
17. |
V. V. Gorskii, A. A. Olenicheva, “Validity of the Binary Diffusion Law in Calculating Heat and Mass Transfer in Gas Mixtures with Complex Chemical Composition”, TVT, 49:1 (2011), 69–72 ; High Temperature, 49:1 (2011), 68–71 |
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2009 |
18. |
V. V. Gorskii, V. A. Sysenko, “Effective method for numerical integration of the equations describing the flow of high-temperature multicomponent gas mixtures in thermochemical equilibrium”, Zh. Vychisl. Mat. Mat. Fiz., 49:7 (2009), 1319–1326 ; Comput. Math. Math. Phys., 49:7 (2009), 1257–1263 |
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2007 |
19. |
V. V. Gorskii, “Spline approximation method”, Zh. Vychisl. Mat. Mat. Fiz., 47:6 (2007), 939–943 ; Comput. Math. Math. Phys., 47:6 (2007), 895–899 |
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1973 |
20. |
V. V. Nemoshkalenko, A. I. Senkevich, V. G. Aleshin, V. V. Gorskii, “X-Ray photoelectron spectra of gold – silver alloys”, Dokl. Akad. Nauk SSSR, 211:6 (1973), 1320–1321 |
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1972 |
21. |
V. V. Gorskii, V. N. Kuz'min, “An estimate of the accuracy of the approximation of the derivatives in the case of nonuniform partitioning of the domain of the definition of the function”, Zh. Vychisl. Mat. Mat. Fiz., 12:5 (1972), 1304–1307 ; U.S.S.R. Comput. Math. Math. Phys., 12:5 (1972), 269–274 |
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1966 |
22. |
V. V. Gorskii, Yu. V. Polezhaev, “О некоторых особенностях, связанных с течением пленки расплава”, TVT, 4:2 (1966), 218–227 |
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1981 |
23. |
V. V. Gorskii, S. T. Surzhikov, “Метод решения сопряженной задачи тепло- и массообмена при аэротермохимическом разрушении тел (№ 2252-81 Деп. от 14.V.81)”, TVT, 19:5 (1981), 1117 |
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1977 |
24. |
V. V. Gorskii, V. A. Tovstonog, “Оценка точности расчета лучистого теплопереноса в полубесконечном плоском слое методом моментов (№ 1952-77 Деп. от 19 V 1977)”, TVT, 15:4 (1977), 925 |
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