An effective and lightweight battery thermal management system with incremental contact area: A numerical study
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Elsevier BV
Reference62 articles.
1. The impact of ambitious fuel economy standards on the market uptake of electric vehicles and specific CO2 emissions;Fritz;Energy Policy,2019
2. EV Outlook 2020: Entering the Decade of Electric Drive;Abergel,2020
3. Canopy-to-canopy liquid cooling for the thermal management of lithium-ion batteries, a constructal approach;Gungor;Int. J. Heat Mass Transf.,2022
4. Experimental investigation of thermal performance of large-sized battery module using hybrid PCM and bottom liquid cooling configuration;Zhang;Appl. Therm. Eng.,2019
5. Thermal behavior analysis of lithium-ion batteries for electric and hybrid vehicles;Sato;J. Power Sources,2001
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