Évaporation à partir d'une surface de liquide libre.
Evaporation from a free liquid surface.
Auteurs : LOTFI A., VRABEC J., FISCHER J.
Type d'article : Article
Résumé
Steady state evaporation from a planar liquid surface into vacuum is modelled by non-equilibrium molecular dynamics simulations of a Lennard-Jones fluid. Studies are made for liquids at a low temperature T/Tc = 0.53, a medium temperature T/Tc = 0.65 and a high temperature T/Tc = 0.84, where Tc is the critical temperature. Results are given for the profiles of density, kinetic temperature, distinguishing between its components, and drift velocity, for the outgoing, incoming and total particle flux as well as for the evaporation coefficient a. Moreover, velocity distribution functions are shown. The simulation results are compared with those from kinetic theory. The key findings are: (a) For the low temperature, the simulations yield values for the vapour density and temperature as well as for the particle flux which confirm the assumption of Hertz about an outgoing half-sided Maxwellian which implies a = 1. (b) For all temperatures, the density profiles do not change significantly in the liquid and in the interface in comparison with equilibrium. (c) For the medium and high temperatures, the kinetic temperatures somewhat decrease already in the liquid and more in the interface which leads to a lower particle flux than assumed by Hertz and hence a decreases with temperature. Finally, a simple correlation is given to estimate a as a function of T/Tc.
Détails
- Titre original : Evaporation from a free liquid surface.
- Identifiant de la fiche : 30011528
- Langues : Anglais
- Source : International Journal of Heat and Mass Transfer - vol. 73
- Date d'édition : 06/2014
- DOI : http://dx.doi.org/10.1016/j.ijheatmasstransfer.2014.02.010
Liens
Voir d'autres articles du même numéro (12)
Voir la source
Indexation
- Thèmes : Transfert de masse
- Mots-clés : Liquide; Vide; Régime permanent; Surface; Modèle; Évaporation
-
TRANSIENT BOILING HEAT TRANSFER FROM TWO DIFFER...
- Auteurs : GIARRATANO P. J.
- Date : 08/1984
- Langues : Anglais
- Source : International Journal of Heat and Mass Transfer - vol. 27 - n. 8
Voir la fiche
-
Rewetting theory and the dryout heat flux of sm...
- Auteurs : CHAN S. H., ZHANG W.
- Date : 02/1994
- Langues : Anglais
- Source : J. Heat Transf. - vol. 116 - n. 1
Voir la fiche
-
AXIALLY VARYING VAPOUR SUPERHEATS IN CONVECTIVE...
- Auteurs : EVANS D., WEBB S. W., CHEN J. C.
- Date : 08/1985
- Langues : Anglais
- Source : J. Heat Transf. - vol. 107 - n. 3
Voir la fiche
-
RESOLUTION DU PROBLEME DE TRANSFERT DE CHALEUR ...
- Auteurs : MINUKHIN L. A.
- Date : 1981
- Langues : Russe
- Source : Izv. Vyss. Ucebn. Zaved., Energ. - vol. 24 - n. 7
Voir la fiche
-
SOLUTION DES PROBLEMES STATIONNAIRES DE TRANSFE...
- Auteurs : BABENKO Ju. I.
- Date : 1983
- Langues : Russe
- Source : Inzh.-fiz. Zh. - vol. 44 - n. 3
Voir la fiche