Effets combinés de l'électrohydrodynamique et de la rugosité superficielle sur l'ébullition libre et le flux thermique critique du R123.
Compound effect of EHD and surface roughness in pool boiling and CHF with R123.
Auteurs : AHMAD S. W., KARAYIANNIS T. G., KENNING D. B. R., et al.
Type d'article : Article
Résumé
Saturated pool boiling of R123 at 1 bar, including the critical heat flux (CHF), was enhanced by modifying the surface characteristics and applying a high intensity electrostatic field, the latter termed electrohydrodynamic (and abbreviated EHD) enhancement. The heat flux was varied from very low values in the natural convection regime up to CHF. Experiments were performed with increasing and decreasing heat flux to study boiling hysteresis without and with EHD. Boiling occurred on the sandblasted surface of a cylindrical copper block with embedded electrical heating elements, with standardized surface parameter Pa = 3.5 µm. The electric field was generated by a potential of 5–25 kV, applied through a 40 mm diameter circular electrode of ss-304 wire mesh, aperture size 5.1 mm, located at distances of 5–60 mm from the surface, with most of the data obtained for 20 mm. The data for the rough surface were compared with earlier data for a smooth surface and indicated a significant increase in the heat transfer rates. EHD produced a further increase in the heat transfer rates, particularly at low heat flux values and near the CHF. Boiling hysteresis was reduced by EHD and eliminated at high field strength. [Reprinted with permission from Elsevier. Copyright, 2011].
Détails
- Titre original : Compound effect of EHD and surface roughness in pool boiling and CHF with R123.
- Identifiant de la fiche : 30004137
- Langues : Anglais
- Source : Applied Thermal Engineering - vol. 31 - n. 11-12
- Date d'édition : 08/2011
- DOI : http://dx.doi.org/10.1016/j.applthermaleng.2011.03.005
Liens
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Indexation
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Thèmes :
Mesures thermodynamiques;
HCFC;
Transfert de chaleur - Mots-clés : Ébullition libre; R123; Surface; Flux thermique; Experimentation; Electrohydrodynamique
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