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Experimental determination on thermal parameters of prismatic lithium ion battery cells

机译:方形锂离子电池电芯热参数的实验确定

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摘要

Characterizing thermal parameters of a lithium ion battery is a key step to predict the temperature distribution of battery cell modules. In this work, a novel method is developed based on the quasi-steady state heat transfer analysis to determine the thermal conductivity and the specific heat simultaneously. Both prismatic lithium iron phosphate cells and pouch cells with different electrode materials are used in this experimental test. A constant heat flux is applied to the cell surface whereas the heat loss is estimated based upon the temperature drop curve. As such, the quasi-steady state heat transfer can be attained to determine cell thermal parameters. It is observed that cell thermal parameters increase linearly with the increase of the operating temperature. Furthermore, the operating temperature has a more significant influence on the cell specific heat than the thermal conductivity, while the effect of the state of charge has a minimal effect on these two parameters. The current method demonstrates an effective and practical way to determine the thermal conductivity and specific heat of the cell simultaneously. (C) 2019 Elsevier Ltd. All rights reserved.
机译:表征锂离子电池的热参数是预测电池单元模块温度分布的关键步骤。在这项工作中,开发了一种基于准稳态传热分析的新方法,可以同时确定导热系数和比热。在该实验测试中,使用了棱柱形磷酸铁锂电池和带有不同电极材料的袋式电池。将恒定的热通量施加到电池表面,而根据温度下降曲线估算热损失。这样,可以实现准稳态热传递以确定电池热参数。观察到电池的热参数随着工作温度的增加线性增加。此外,工作温度对电池比热的影响比对导热率的影响更大,而荷电状态的影响对这两个参数的影响却很小。当前的方法展示了一种同时测定电池的热导率和比热的有效方法。 (C)2019 Elsevier Ltd.保留所有权利。

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