Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
788651 | International Journal of Refrigeration | 2015 | 11 Pages |
•The nano-refrigerants can be used in the corrugated tube.•Entropy production is mainly due to the friction generated.•The max Nusselt number of the 0.3 wt% nano-refrigerants increased by 40%.
The heat transfer and flow characteristics of MWCNT-R141b nanorefrigerant with different mass fractions have been studied through experiments. Experimental results were compared with existing correlations. A two-step method was used to prepare the nanorefrigerants. Span-80 was used as surfactant with an average particle diameter of 20 nm. Transmittance method was used to evaluate the stability of nanorefrigerants. Results showed that the stability of MWCNT-R141b nanorefrigerant, which is the added dispersant, was good during the experiments. The 0.3 wt% MWCNT-R141b nanorefrigerants had optimal heat transfer enhancement effects compared with pure refrigerants. The maximum Nusselt number increased by 40%. The specific pressure drop of nanorefrigerant increased as the Reynolds number (Re) increased, and the specific pressure drop of the pure refrigerant was minimum, which is similar to R141b.