锂离子电池液冷管路优化
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湖南省科技创新领军人才基金资助项目(2020RC4032)


Optimization of Liquid Cooling Pipeline for Lithium-Ion Batteries
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    摘要:

    锂离子电池热管理系统是提高冷却效率的关键。针对车载锂离子电池的液冷通道管路,对其进行设计优化,建立了相应的数值模型,并通过实验验证了数值模型的可行性。研究结果表明:微通道冷却系统在高倍率放电下,可以将电池的温差从9.74 K降低至4.71 K,最高温度从309.74 K降低至305.13 K,都在最佳工作范围之内。通过对冷却液温度的研究发现,只通过降低冷却液温度并不能改善电池的温度环境,需要一个合适的温度来保障电池的温差,并且冷却液温度与电池的温差呈现出线性关系,电池的温差随着冷却液的温度降低而增大。

    Abstract:

    Due to the fact that the thermal management system of lithium-ion batteries is the key to the improvement of cooling efficiency, a corresponding numerical model has been established to optimize the design of the liquid cooling channel pipeline for vehicle lithium-ion batteries, with the feasibility of the numerical model to be demonstrated through experimental verification. The results show that under a high-rate discharge, the microchannel cooling system can reduce the temperature difference of the battery from 9.74 K to 4.71 K and the maximum temperature from 309.74 K to 305.13 K, both within the optimal operating range. A research on the coolant temperature reveals that an improvement of the temperature environment of the battery cannot be achieved by simply reducing the coolant temperature. A suitable temperature is needed to ensure the temperature difference of the battery, with a linear relationship between the coolant temperature and the temperature difference of the battery. Meanwhile, the temperature difference of the battery increases as the coolant temperature decreases.

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陈 皓,赵福云,谭志成,姚奕合.锂离子电池液冷管路优化[J].湖南工业大学学报,2023,37(5):44-51.

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  • 收稿日期:2022-04-11
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  • 在线发布日期: 2023-07-04
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