Heat transfer and pressure drop characteristics of hybrid Al₂O₃-SiO₂ / Muyassarah Syahirah Mohd Yatim ...[et al.]

The emergence of Proton Electrolyte Membrane Fuel Cell (PEMFC) is seen as one of the greener alternatives to internal combustion engine (ICE) in automotive industry nowadays. However, the sensitivity of a PEMFC membrane needs to be further improved for the optimum performance. In this study, single...

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Main Authors: Mohd Yatim, Muyassarah Syahirah (Author), Zakaria, Irnie Azlin (Author), Roslan, Mohamad Fareez (Author), Wan Mohamed, Wan Ahmad Najmi (Author)
Format: Book
Published: Universiti Teknologi MARA, 2021-04.
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100 1 0 |a Mohd Yatim, Muyassarah Syahirah  |e author 
700 1 0 |a Zakaria, Irnie Azlin  |e author 
700 1 0 |a Roslan, Mohamad Fareez  |e author 
700 1 0 |a Wan Mohamed, Wan Ahmad Najmi  |e author 
245 0 0 |a Heat transfer and pressure drop characteristics of hybrid Al₂O₃-SiO₂ / Muyassarah Syahirah Mohd Yatim ...[et al.] 
260 |b Universiti Teknologi MARA,   |c 2021-04. 
500 |a https://ir.uitm.edu.my/id/eprint/47716/1/47716.pdf 
520 |a The emergence of Proton Electrolyte Membrane Fuel Cell (PEMFC) is seen as one of the greener alternatives to internal combustion engine (ICE) in automotive industry nowadays. However, the sensitivity of a PEMFC membrane needs to be further improved for the optimum performance. In this study, single and hybrid nanofluids are used as an alternative coolant in a single channel of PEMFC. The study was conducted in a channel with the adoption of single and hybrid nanofluids to observe the effect of the heat transfer and pressure drop in the set up. A heater pad was kept at constant heat load of 100 W, reflecting the actual heat load of a single cell. The study focuses on 0.5% volume concentration for single and hybrid nanofluids of Al2O3 and SiO2 in water. The numerical study was conducted via ANSYS FLUENT 16.0. The 0.5% hybrid Al2O3:SiO2 nanofluids of 10:90 and 30:70 in Re range of 300 to 1000 were compared to the base fluid. The heat transfer increament of 9.1% and 9.85%. was observed. However, the pressure drop was also increased in the range of 22 Pa to 26 Pa for 0.5 % of Al2O3:SiO2 of 10:90 and 30:70 consecutively as compared to the base fluid. The advantage ratio was then analyzed to show the feasibility of both ratios of 0.5 % hybrid nanofluid of Al2O3:SiO2 at 10:90 and 30:70. It shows that both have advantage ratio higher than 1, thus feasible for the adoption in a PEMFC. 
546 |a en 
690 |a Heat 
690 |a Transmission. Heat transfer 
655 7 |a Article  |2 local 
655 7 |a PeerReviewed  |2 local 
787 0 |n https://ir.uitm.edu.my/id/eprint/47716/ 
787 0 |n https://jmeche.uitm.edu.my/ 
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