河南科技2024,Vol.51Issue(20) :10-13.DOI:10.19968/j.cnki.hnkj.1003-5168.2024.20.002

液冷储能电池模块设计及仿真研究

Design and Simulation of Liquid-Cooled Energy Storage Battery Module

陈晨 罗军 赵晓亮 田刚领 李娟
河南科技2024,Vol.51Issue(20) :10-13.DOI:10.19968/j.cnki.hnkj.1003-5168.2024.20.002

液冷储能电池模块设计及仿真研究

Design and Simulation of Liquid-Cooled Energy Storage Battery Module

陈晨 1罗军 2赵晓亮 1田刚领 1李娟1
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作者信息

  • 1. 平高集团储能科技有限公司,天津 300000
  • 2. 平高集团有限公司,河南 平顶山 467000
  • 折叠

摘要

[目的]为了研究基于多流道液冷板的储能电池模块温度特性,设计了高效散热的液冷储能电池模块.[方法]采用仿真模拟方法,建立液冷储能电池模块流—固耦合模型,分析液冷储能电池模块在1 P充放电功率下的冷却液流场和电池温度场的分布特性,并结合试验进行验证.[结果]该液冷储能电池模块以额定功率1 P充放电时,电池单体表面最大温升为12.5℃,最大温差为3.2℃.[结论]该液冷储能电池模块具有良好的温度控制能力,可为大容量储能系统的热管理设计提供借鉴.

Abstract

[Purposes]In order to study temperature characteristics of energy storage battery module based on multi-channel liquid-cooled plate,this paper designed efficient heat dissipation liquid-cooled en-ergy storage battery module.[Methods]The fluid-solid coupling model of liquid-cooled energy storage battery module was established by simulation method.The distribution characteristics of coolant flow field and battery temperature field of liquid-cooled energy storage battery module under 1 P charging and discharging power were analyzed and verified by experiments.[Findings]When the liquid-cooled energy storage battery module was charged and discharged at 1 P,the maximum temperature rise of bat-teries was 12.5℃and the maximum temperature difference was 3.2℃.[Conclusions]The result indi-cated that the liquid-cooled energy storage battery module had good temperature control ability,which could provide reference for the thermal management design of the energy storage system.

关键词

液冷/电池模块/热仿真/温度控制

Key words

liquid-cooling/battery module/thermal simulation/temperature control

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出版年

2024
河南科技
河南省科学技术信息研究院

河南科技

影响因子:0.615
ISSN:1003-5168
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