A comprehensive review of novel cooling techniques and heat transfer coolant mediums investigated for battery thermal management systems in electric vehicles
Author:
Funder
VUB
Horizon 2020
Horizon 2020 Framework Programme
Publisher
Elsevier BV
Subject
General Energy
Reference156 articles.
1. Thermal management systems based on heat pipes for batteries in EVs/HEVs;Abdelkareem;J. Energy Storage,2022
2. Loop heat pipe design: An evaluation of recent research on the selection of evaporator, wick, and working fluid;Ahmed;J. Therm. Sci. Eng. Appl.,2022
3. Experimental and numerical thermal analysis of a lithium-ion battery module based on a novel liquid cooling plate embedded with phase change material;Akbarzadeh;J. Energy Storage,2022
4. Novel thermal management system using boiling cooling for high-powered lithium-ion battery packs for hybrid electric vehicles;Al-Zareer;J. Power Sources,2017
5. Numerical study of lozenge, triangular and rectangular arrangements of lithium-ion batteries in their thermal management in a cooled-air cooling system;Alharbi;J. Energy Storage,2022
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