Nature of wall heat transfer coefficient in packed beds
โ Scribed by Thomas J. Hanrattry
- Publisher
- Elsevier Science
- Year
- 1954
- Tongue
- English
- Weight
- 454 KB
- Volume
- 3
- Category
- Article
- ISSN
- 0009-2509
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โฆ Synopsis
A mechanism of heat transfer from a tube wall to fluid flowing in a packed bed is proposed whereby : (1) a mass of fluid is thrown against the wall ; (2) the fluid at the wall assumes the wall temperature and transfer occurs inward ; (3) this mass of fluid moves away from the wall and is replaced by new fluid. On the basis of this mechanism the following equation was derived using order of magnitude considerations : This expression is compared with data on wall illm coefficients for cylindrical packings. Good agreement is obtained. However, no such agreement is obtained for spherical packing. The explanation for this difference proposed by P~nurz [3] is subscribed to. RBsum~-Pour le transfert de la chaleur entre la paroi d'un tube et un fluide en mouvement, dans un lit poreux, l'auteur fait les hypotheses suivantes : (1') Une masse de fluide rencontre la paroi. (27 Le flmde, au contact de la paroi, prend sa temperature et un transfer-t s'etablit vers l'int&ieur. (37 Cette masse de fluide quitte la paroi et est remplacde par une autre. Sur la base de ce m&anisme et en tenant compte de ces considerations par ordre d'importance, il obtient l'equation ci-dessus qu'il compare aux valeurs experimentales des coefficients de " him le long de la paroi " pour des garnissages cylindriques. L'accord est bon, mais pour des gamissages spheriques, l'accord est moins satisfaisant. L'auteur accepte l'explication de cette difference proposee par PALUTZ.
๐ SIMILAR VOLUMES
Abstxact-A new analysis showing the effect of axial and radial thermal dispersion and wall thermal resistance upon heat transfer to fixed beds of solids is presented. By application of this theory and non-linear regression, coefficients of axial and radial dispersion and wall heat transfer coefficie
The heat transfer between a fluid flowing through a packed bed and the wall is interpreted according to a one-dimensional model characterized by an overall heat transfer coefficient, h, and by two-dimensional models with one parameter, the effective thermal conductivity, k, or two parameters, the ef