使用星形通道和相变材料的锂离子电池混合冷却系统

Energy Storage Pub Date : 2025-04-21 DOI:10.1002/est2.70173
Khaleel Al Khasawneh, Aman Al Khatib
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引用次数: 0

摘要

提出了一种采用相变材料和星形流体通道对锂离子电池进行冷却的方法。该设计在6个21700圆柱形锂离子电池上进行了测试。6个电池单元被放置在一个充满蜡作为相变材料的盒子里,在这个盒子里,用四个星形截面的水渠冷却。假定流动是稳定的、充分发展的、层流的。本研究使用COMSOL Multiphysics 5.6软件进行,假设对电池进行集中分析,对蜡和水的不可压缩流进行集中分析。结果表明,当星形通道和石蜡以4℃速率排出15%时,温度降低了9.43℃~ 11.07℃。而石蜡和圆形通道的温度降低了9.13℃~ 10.51℃。在放电过程中不采用任何冷却方法进行研究时,电池6达到39.528℃,电池1达到39.468℃。然而,采用星形通道和石蜡壳冷却后,电池6的温度降至29.788℃,电池1的温度为30.034℃,电池5的最低温度为28.440℃。电池6、电池1和电池5的温度分别为30.146℃、30.339℃和28.996℃。当用正十八烷蜡代替石蜡时,所有电池温度降至约27.4℃。结果表明,与其他冷却设计和方法相比,相变材料和星形通道的冷却温度最低。通过将本研究结果与已发表的结果进行比较,发现本研究与以往的研究结果很好地吻合,并有显著的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Cooling System of Lithium-Ion Battery Using Star-Shaped Channels and Phase-Change Materials

Cooling lithium-ion batteries using phase change material and star-shaped channel for flowing fluid is presented in this paper. The proposed design is tested on six 21700 cylindrical lithium-ion battery cells. The six battery cells are placed in a case filled with wax as a phase change material, where this case is cooled using four water channels with star-shaped cross-section. The flow is assumed to be steady, fully developed, and laminar. This study is conducted using COMSOL Multiphysics 5.6 software, assuming lumped analysis for the batteries and incompressible flow for both wax and water. It was shown from the results that the temperature lowered by a range of 9.43°C to 11.07°C when discharged to 15% by 4C rate with the star-shaped channels and paraffin wax. While the temperature lowered by a range of 9.13°C to 10.51°C with paraffin wax and circular channels. When the study was carried out without any cooling method during discharge, battery 6 reached 39.528°C, while battery 1 reached 39.468°C. However, after cooling using star-shaped channels and paraffin wax case, the temperature of battery 6 dropped to 29.788°C, while battery 1 was 30.034°C, and the lowest temperature was 28.440°C for battery 5. The temperatures of the batteries with circular channels for cooling were recorded as 30.146°C, 30.339°C, and 28.996°C for batteries 6, 1, and 5, respectively. When paraffin wax was replaced by n-Octadecane wax, all battery temperatures dropped to approximately 27.4°C. The results showed that cooling using phase change material and star-shaped channels achieved the lowest temperatures compared to other cooling designs and methods. By comparing the present results with the published results, it was found that the present study is in good agreement with previous findings and shows notable improvements.

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CiteScore
2.90
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