Heating and evaporation of a multi-component liquid film: Effects of heat flux at the wall and continuous supply of liquid; Physics of Fluids; Vol. 37, iss. 12

Détails bibliographiques
Parent link:Physics of Fluids.— .— New York: AIP Publishing
Vol. 37, iss. 12.— 2025.— Article number 122108, 10 p.
Autres auteurs: Barsukov A. V., Antonov D. V. Dmitry Vladimirovich, Nazarov A. D. Aleksandr Dmitrievich, Miskiv N. B. Nikolay Bogdanovich, Nazarov N. A. Nikita Aleksandrovich, Terekhov V. V. Viktor Viktorovich, Shchepakina E. A. Elena Anatoljevna, Sobolev V. A. Vladimir Andreevich, Sazhin S. S. Sergey Stepanovich
Résumé:Title screen
A new model for heating and evaporation of a multi-component liquid film that takes into account the contribution of the heat flux from/to the wall (the Neumann boundary condition) and supply/removal of liquid to/from the film is described. The Robin boundary condition at the outer surface of the film is used. The film is assumed to be sufficiently thin to allow for the description of the heat transfer and component diffusion processes using one-dimensional heat transfer and component diffusion equations. These equations are used at each time step of the calculation. The solutions to these equations at the end of the time step are used as initial conditions for the next time step with updated values of the input parameters. The predictions of the numerical code are validated using in-house experimental data that refers to water spray impact on a vertical wall. The verification of the model is performed by comparing the predictions of two in-house numerical codes, one based on the new model and the other on the numerical solutions of the heat transfer and component diffusion equations, for a water–ethanol mixture with initial equal mass fractions of the components
Текстовый файл
AM_Agreement
Langue:anglais
Publié: 2025
Sujets:
Accès en ligne:https://doi.org/10.1063/5.0301107
https://www.researchgate.net/publication/398295258_Heating_and_evaporation_of_a_multi-component_liquid_film_Effects_of_heat_flux_at_the_wall_and_continuous_supply_of_liquid
Format: Électronique Chapitre de livre
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=683636

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330 |a A new model for heating and evaporation of a multi-component liquid film that takes into account the contribution of the heat flux from/to the wall (the Neumann boundary condition) and supply/removal of liquid to/from the film is described. The Robin boundary condition at the outer surface of the film is used. The film is assumed to be sufficiently thin to allow for the description of the heat transfer and component diffusion processes using one-dimensional heat transfer and component diffusion equations. These equations are used at each time step of the calculation. The solutions to these equations at the end of the time step are used as initial conditions for the next time step with updated values of the input parameters. The predictions of the numerical code are validated using in-house experimental data that refers to water spray impact on a vertical wall. The verification of the model is performed by comparing the predictions of two in-house numerical codes, one based on the new model and the other on the numerical solutions of the heat transfer and component diffusion equations, for a water–ethanol mixture with initial equal mass fractions of the components 
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701 1 |a Barsukov  |b A. V. 
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701 1 |a Nazarov  |b A. D.  |g Aleksandr Dmitrievich 
701 1 |a Miskiv  |b N. B.  |g Nikolay Bogdanovich 
701 1 |a Nazarov  |b N. A.  |g Nikita Aleksandrovich 
701 1 |a Terekhov  |b V. V.  |g Viktor Viktorovich 
701 1 |a Shchepakina  |b E. A.  |g Elena Anatoljevna 
701 1 |a Sobolev  |b V. A.  |g Vladimir Andreevich 
701 1 |a Sazhin  |b S. S.  |g Sergey Stepanovich 
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