基于分布参数的电池热管理系统温度仿真模型

Bingliang Zhao, Wei Yang, Haiyang Jiang, Xinlei Xu, Chao Lyu
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引用次数: 0

摘要

电池系统的温度变化具有很大的滞后性和非线性。为了实时预测电池的温度场,本文提出了一种三维多节点热模型,该模型由基于电池几何形状的多节点传热模型和获取热阻参数的有限元仿真两部分组成。将该模型在电池单体和电池组中的仿真结果与有限元仿真结果进行对比,仿真误差不大于1℃,计算时间由2小时缩短至0.1s以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Temperature Simulation Model of Battery Thermal Management System Based on Distributed Parameters
The temperature change of the battery system has great hysteresis and nonlinearity. To predict the temperature field of the battery in real time, this paper proposes a three-dimensional multi-node thermal model, which consists of two parts: a multinode heat transfer model based on battery geometry and a finite element simulation to obtain thermal resistance parameters. Comparing the simulation results of this model in battery cells and battery packs with finite element simulation shows that the simulation error is no greater than 1°C, and the calculation time is reduced from two hours to less than 0.1s.
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