热失控
电池组
电池(电)
量热计(粒子物理)
热的
发热
核工程
GSM演进的增强数据速率
机械
有限元法
材料科学
模拟
机械工程
计算机科学
工程类
电气工程
结构工程
热力学
物理
功率(物理)
电信
探测器
作者
Paul T. Coman,Eric Darcy,Ralph E. White
出处
期刊:Journal of The Electrochemical Society
[The Electrochemical Society]
日期:2022-03-30
卷期号:169 (4): 040516-040516
被引量:27
标识
DOI:10.1149/1945-7111/ac62bd
摘要
This paper presents a simplified thermal runaway model (FEM) used to guide the design of a novel battery pack designed to resist thermal runaway propagation passively. The model is based on the heat equation for a 2D geometry with a heat generation term based on the maximum amount of energy measured using a custom-made calorimeter. The model was validated against experimental data using a 48-cell subscale of a full-scale battery pack for three different runs with three trigger cells with Internal Short Circuit Devices (ISCD) implanted in the separators. One trigger cell was placed at the edge, one placed in the middle, surrounded by six cells, and one placed in one corner of the subscale pack. It was shown that by simplifying the geometry and looking at the complex thermal runaway propagation mechanism only from a thermal perspective (no electrochemical reactions or fluid flow), the model predicted the experimental data with good precision. Furthermore, such a model was used to validate some experimental observations, which indicated the practicality of such a simplified design tool.
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