Promotion of practical technology of the thermal management system for cylindrical power battery

Author:

Li Ge

Abstract

AbstractAmidst the industrial transformation and upgrade, the new energy vehicle industry is at a crucial juncture. Power batteries, a vital component of new energy vehicles, are currently at the forefront of industry competition with a focus on technological innovation and performance enhancement. The operational temperature of a battery significantly impacts its efficiency, making the design of a reliable Thermal Management System (TMS) essential to ensure battery safety and stability. Cylindrical power batteries are widely utilized in the industry. This article outlines the four main structures and their drawbacks of TMS for cylindrical power batteries. Among these structures, air cooling falls short in meeting high heat dissipation requirements. Liquid cooling is expensive, intricate, and adds considerable weight. Phase Change Materials (PCM) are not yet prevalent in practical applications. Similarly, heat pipes are relatively uncommon in large high-power battery packs. To better align with the new energy vehicle industry’s demands for top-notch performance, cost-effectiveness, eco-friendliness, and reliability, this paper strongly recommends delving deeper into composite cooling solutions. The construction of an economically viable and fully optimized composite cooling method is poised to become a significant scientific challenge for future research endeavors.

Publisher

Springer Science and Business Media LLC

Reference53 articles.

1. Alrashdan A, Mayyas AT, Al-Hallaj S (2010) Thermomechanical behaviors of the expanded graphite-phase change material matrix used for thermal management of Li-ion battery packs. J Mater Process Technol 210(1):174–179

2. Cai TQ, Shen XY, He CM et al (2023) Research on thermal behavior of power lithium-ion batteries and optimization design of air-cooled heat dissipation. Power Technol 47(2):187–192

3. Cao JH (2022) Performance study of liquid cooling and phase change material coupled battery thermal management system. South China University of Technology

4. Chen WC (2022) Development and testing of hydrated salt/aluminum nitride/carbon fiber composite phase change materials and research on the cooling application of power batteries. Jiangsu University, Jiangsu

5. Chen HS, Li H, Xu Y et al (2023) Progress in research on energy storage technology in China in 2022. Energy Storage Sci Technol 12(05):1516–1552

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