首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Optimization investigation on the liquid cooling heat dissipation structure for the lithium-ion battery package in electric vehicles
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Optimization investigation on the liquid cooling heat dissipation structure for the lithium-ion battery package in electric vehicles

机译:电动车辆锂离子电池封装液体冷却散热结构的优化研究

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摘要

The requirements of cooling and weight reduction for lithium-ion battery packages in electric vehicles are increasingly important. In this paper, a liquid cooling heat dissipation structure is designed and optimized. First of all, the effects of tube diameter, spacing, thickness and layout of the cooling plate on the heat dissipation of the battery package are investigated by using computational fluid dynamics. Afterwards, based on the optimal results of the single factor analysis, an orthogonal table with four factors and three levels are constructed to perform a single-objective optimization, where the minimization of the maximum temperature is the optimization object. Meanwhile, an experiment is carried out to verify the accuracy of the simulation model. In order to further reduce the mass of the cooling plate, a multi-objective optimization is performed, where the minimization of the maximum temperature and the mass are the optimization objects. The maximum temperature is increased by 10.9% in the multi-objective optimization when compared with that in the single objective optimization. However, the mass of the cooling plate in the multi-objective optimization can drop by 82.4%.
机译:电动汽车锂离子电池封装的冷却和重量减轻的要求越来越重要。在本文中,设计和优化了液体冷却散热结构。首先,通过使用计算流体动力学研究了冷却板的管直径,间距,厚度和布局对电池封装的散热的影响。之后,基于单因素分析的最佳结果,构造具有四个因素和三个级别的正交表以执行单个客观优化,其中最大温度最小化是优化对象。同时,进行实验以验证模拟模型的准确性。为了进一步降低冷却板的质量,执行多目标优化,其中最大温度和质量的最小化是优化对象。与单一客观优化中的多目标优化时,最高温度增加10.9%。然而,多目标优化中的冷却板的质量可以下降82.4%。

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