A novel pseudo two-dimensional model for NCM Liion battery based on electrochemical-thermal coupling analysis

Dongsheng Wang, Yizhao Gao, Xi Zhang, Tenghui Dong, Chong Zhu
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引用次数: 2

Abstract

The thermal state of the automotive Li-ion battery requires to be monitored by the thermal management system for safety purpose. This paper presents a pseudo two-dimensional model for a 18650 cylindrical Li-ion battery to estimate heat generation and predict the transient temperature at 2C discharge and charge rates based on the electrochemical-thermal coupling analysis. For experimental validation, the 18650 cylindrical lithium-ion battery cell is tested under high and low temperature alternation inside the closed chamber whose temperature is under control. Various kinds of heat generations of the battery at different working conditions are achieved during charging and discharging at a rate of 2C. The temperature change estimated by the model is in good agreement with the experimental data. Therefore, the proposed thermal model provides a reliable temperature estimation of Li-ion batteries, which is sufficient accurate for the thermal management of the automotive battery. Moreover, the calculation cost of the proposed thermal model is evaluated and proven to be small enough for engineering application in the thermal management.
基于电化学-热耦合分析的新型NCM锂电池伪二维模型
出于安全考虑,汽车锂离子电池的热状态需要通过热管理系统进行监控。本文基于电化学-热耦合分析,建立了18650圆柱锂离子电池的伪二维模型,用于估算电池在2C放电和充电速率下的热生成和瞬态温度。为了实验验证,18650圆柱形锂离子电池电芯在温度可控的密闭室内进行高低温交替测试。以2C的充放电速率实现了电池在不同工作条件下的各种热生成。模型估算的温度变化与实验数据吻合较好。因此,所提出的热模型为锂离子电池提供了可靠的温度估计,为汽车电池的热管理提供了足够的精度。此外,对所提出的热模型的计算成本进行了评估,并证明该模型的计算成本足够小,可用于热管理的工程应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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