吉林大学学报(信息科学版)

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基于 AMESim 的动力电池组并联回路水冷系统研究

马 彦 a,b , 王 留 b , 高肖璟 b   

  1. 吉林大学 a. 汽车仿真与控制国家重点实验室; b. 通信工程学院, 长春 130022
  • 收稿日期:2017-03-01 出版日期:2017-05-25 发布日期:2017-06-07
  • 通讯作者: 王留(1991— ), 男, 安徽宣城人, 吉林大学硕士研究生,主要从事电动汽车动力电池管理系统热管理系统研究, (Tel)86-18744018669(E-mail)waynewangnew@163. com。
  • 作者简介:马彦(1970— ), 女, 长春人, 吉林大学教授, 硕士生导师, 主要从事电动汽车动力电池管理系统、 系统辨识研究, (Tel) 86-13944003569(E-mail)mayan_maria@163. com。
  • 基金资助:
     国家自然科学基金国际(地区)合作与交流重点基金资助项目(61520106008); 吉林省教育厅"十三五"科学技术研究规划
    基金资助项目(2016430); 吉林大学研究生创新基金资助项目(2016030)

Study on Water Cooling System with Parallel Loop of Power Battery Pack Based on AMESim

MA Yan a,b , WANG Liu b , GAO Xiaojing b   

  1. a. State Key Laboratory of Automotive Simulation and Control;
    b. College of Communication Engineering, Jilin University, Changchun 130022, China
  • Received:2017-03-01 Online:2017-05-25 Published:2017-06-07

摘要: 针对现有风冷系统和串联回路水冷系统在降低电池组最高温度和减小单体电池间最大温差不足的问题,
提出了一种并联回路形式的水冷系统。 在分析锂离子电池生热机理的基础上, 建立电池的温度模型, 并在
AMESim(Advanced Modeling Environment for Performing Simulation)软件中搭建并联回路的电池组水冷系统, 同时
通过仿真实验与串联回路水冷系统进行散热性能对比。 其结果表明, 联回路形式的水冷系统散热效果更好, 在
维持电池组最高温度的基础上, 有效减小了单体电池间的温差, 并为进一步研究并联回路水冷系统的控制算法
打下基础。

关键词: 电池热管理系统, 水冷系统, 电池热仿真, 并联回路, AMESim 软件

Abstract:  In order to meet the requirements of electric vehicle battery thermal management system which is
purposed to reduce the maximum temperature of the battery pack and the temperature difference between single
cells, to overcome the shortcomings of existing air cooling system and series loop water cooling system, to reduce
the maximum temperature and the temperature difference between single cells, a water cooling system with
parallel loop is proposed. Based on the analysis of the heat generation mechanism of lithium ion battery, the
temperature model of the battery was established, and the battery water cooling system with parallel loop was
built in AMESim (Advanced Modeling Environment for Performing Simulation) software. The heat dissipation
performance was compared with the series loop water cooling system via simulation experiments. Good results
have been achieved, the temperature difference is effectively reduced on the basis of maintaining the maximum
temperature of the battery pack, which laid the foundation for the further study of the control algorithm for the
parallel loop water cooling system.

Key words: water cooling system, parallel loop, battery thermal management system, advanced modeling environment for performing simulation(AMESim), battery thermal simulation

中图分类号: 

  • TP23