Abstract
Four types of cooling plates with serpent channel structures are established to study the cooling effect of rectangular lithium-ion power battery under different cooling plates. Then, the number of serpent bends is analyzed, whether the fillet and pipe wall thickness is set on the cooling performance of the liquid cooling plate. According to the analysis results, a new liquid flow structure form of liquid cooling plate is designed. Numerical simulation results show that the newly designed cooling plate is integrated with the front flow of water and the internal liquid side flow, achieving a cooling effect with the maximum temperature is 309.55K and a pressure drop of 6032.1pa, which has the most effective cooling performance. Under the requirement of controlling reasonable temperature and low-pressure drop, a liquid cooling plate with better performance can be designed by innovatively setting the direction of the water inlet and outlet and the water channel's internal flow. The above results will provide some ideas for the design of a lithium-ion battery liquid cooling plate.
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CITATION STYLE
Yang, D., & Jiang, M. (2021). The study of the physical characteristics and cooling plate thermal control below the lithium battery based on FEA. In Journal of Physics: Conference Series (Vol. 2083). IOP Publishing Ltd. https://doi.org/10.1088/1742-6596/2083/2/022012
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