An experimental and numerical study on heat transfer enhancement for gas heat exchangers fitted with porous media

The present experimental and numerical work investigates the effect of metallic porous materials, inserted in a pipe, on the rate of heat transfer. The pipe is subjected to a constant and uniform heat flux. The effects of porosity, porous material diameter and thermal conductivity as well as Reynold...

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Veröffentlicht in:International journal of heat and mass transfer 2004-11, Vol.47 (23), p.4939-4952
Hauptverfasser: Pavel, Bogdan I., Mohamad, Abdulmajeed A.
Format: Artikel
Sprache:eng
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Zusammenfassung:The present experimental and numerical work investigates the effect of metallic porous materials, inserted in a pipe, on the rate of heat transfer. The pipe is subjected to a constant and uniform heat flux. The effects of porosity, porous material diameter and thermal conductivity as well as Reynolds number on the heat transfer rate and pressure drop are investigated. The results are compared with the clear flow case where no porous material was used. The results obtained lead to the conclusion that higher heat transfer rates can be achieved using porous inserts at the expense of a reasonable pressure drop. Also, it is shown that for an accurate simulation of heat transfer when a porous insert is employed its effective thermal conductivity should be carefully evaluated.
ISSN:0017-9310
1879-2189
DOI:10.1016/j.ijheatmasstransfer.2004.06.014