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Anatolii Voronin, Olga Gunko, Lidiia Afanasieva
Pág. 22 - 29
The subject of this work is the problem of the dynamic interaction of innovative products in a competitive market. Sustainable economic growth is currently impossible without increasing the competitiveness of enterprises and industries, largely determine...
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M. M. Biliaiev, M. V. Lemesh, O. Y. Gunko, V. O. Zadoia, P. B. Mashykhina, Z. M. Yakubovska
Pág. 5 - 14
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V. V. Biliaieva,P. S. Kirichenko,E. Y. Gunko,I. O. Bondarenko,P. B. Mashykhina,Z. M. Yakubovska
Pág. 26 - 35
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M. M. Biliaiev,T. I. Rusakova,I. V. Kalashnikov,I. O. Bondarenko,E. Y. Gunko
Pág. 7 - 17
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M. M. Biliaiev,L. F. Dolina,O. Yu. Gunko
Pág. 170 - 176
The 3D-numerical model to simulate the toxic gas dispersion on industrial sites and inflow of toxic gas into the industrial room after accident ejections was developed. The model is based on the K-gradient transport model and equation of potential flow. ...
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N. N. Belyaev,E. Yu. Gunko,T. P. Reshetnyak
Pág. 141 - 146
The 3D numerical model to simulate the toxic gas dispersion at an industrial site and inflow of toxic gas into the industrial room after an accident ejection was developed. The model is based on the K-gradient transport model and equation of potential fl...
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O. M. Pshinko,M. M. Biliaiev,O. Yu. Gunko
Pág. 143 - 148
The 3D CFD model to simulate the pollutant transfer and the process of neutralization of toxic gas after accidents was developed. The model is based on the transport gradient model and the model of inviscid incompressible fluid. The results of numerical ...
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M. M. Biliaiev,O. Yu. Gunko,S. O. Sachuk
Pág. 90 - 93
The 3D model to simulate the pollutant transfer near building after accidents was developed. The model is based on the transport gradient model and the model of inviscid imcompressible fluid. The results of numerical experiments are presented.
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O. Yu. Gunko
Pág. 87 - 90
The 3D numerical model to simulate the toxicant propagation at an industrial site after the emergency blow-out was developed. The model is based on the transport gradient model and the model of inviscous incompressible fluid. The results of numerical exp...
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Ye. Yu. Gunko
Pág. 35 - 39
The 3D model to simulate the pollutant transfer near building after accidents was developed. The model is based on the transport gradient model and the model of invisid imcompressible fluid. The results of numerical experiments are presented.
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