Experimental study of hybrid interface cooling system using air ventilation and nanofluid

The hybrid interface cooling system needs to be established to chill the battery compartment of electric car and maintained its ambient temperature inside the compartment between 25°C to 35°C. The air cooling experiment has been conducted to verify the cooling capacity, compressor displacement volum...

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Hauptverfasser: Rani, M. F. H., Razlan, Z. M., Bakar, S. A., Desa, H., Wan, W. K., Ibrahim, I., Kamarrudin, N. S., Bin-Abdun, Nazih A.
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:The hybrid interface cooling system needs to be established to chill the battery compartment of electric car and maintained its ambient temperature inside the compartment between 25°C to 35°C. The air cooling experiment has been conducted to verify the cooling capacity, compressor displacement volume, dehumidifying value and mass flow rate of refrigerant (R-410A). At the same time, liquid cooling system is analysed theoretically by comparing the performance of two types of nanofluid, i.e., CuO + Water and Al2O3 + Water, based on the heat load generated inside the compartment. In order for the result obtained to be valid and reliable, several assumptions are considered during the experimental and theoretical analysis. Results show that the efficiency of the hybrid interface cooling system is improved as compared to the individual cooling system.
ISSN:0094-243X
1551-7616
DOI:10.1063/1.5002267