Novel intense metallic monolith for automotive applications: Experimental versus numerical studies - 05/11/15
pages | 6 |
Iconographies | 7 |
Vidéos | 0 |
Autres | 0 |
Abstract |
Three-dimensional numerical analysis for simultaneously developing fluid flow and heat transfer through triangular and sinusoidal channels is simulated in this paper. ANSYS FLUENT 12 was used for simulations. Numerical results were compared with experimental ones for the same channels dimensions. The research was conducted to verify that very short metallic monoliths could be applied to engine pre-turbo catalytic converters. It was shown that short monoliths have high potential to reduce HC/CO emissions due to higher temperatures and flow velocities in front of the turbocharger, resulting in increased heat and mass transfer and reaction kinetics accompanied with reduced flow resistance.
Le texte complet de cet article est disponible en PDF.Keywords : Heat transfer, Flow friction, Simultaneous development, Structured reactor, CFD
Plan
Vol 18 - N° 10
P. 1030-1035 - octobre 2015 Retour au numéroBienvenue sur EM-consulte, la référence des professionnels de santé.
L’accès au texte intégral de cet article nécessite un abonnement.
Bienvenue sur EM-consulte, la référence des professionnels de santé.
L’achat d’article à l’unité est indisponible à l’heure actuelle.
Déjà abonné à cette revue ?