Experimental and simulative investigations on a phase change material nano-emulsion-based liquid cooling thermal management system for a lithium-ion battery pack

被引:105
|
作者
Wang, Fangxian [1 ,2 ]
Cao, Jiahao [2 ]
Ling, Ziye [2 ,3 ]
Zhang, Zhengguo [2 ,3 ]
Fang, Xiaoming [2 ,3 ]
机构
[1] Dongguan Univ Technol, Res Ctr Ecoenvironm Engn, Dongguan 523808, Peoples R China
[2] South China Univ Technol, Sch Chem & Chem Engn, Key Lab Enhanced Heat Transfer & Energy Conservat, Minist Educ, Guangzhou 510640, Peoples R China
[3] South China Univ Technol, Guangdong Engn Technol Res Ctr Efficient Heat Sto, Guangzhou 510640, Peoples R China
基金
中国国家自然科学基金;
关键词
Lithium-ion battery thermal management; Liquid cooling; Coolant; Phase change material nano-emulsion; Thermal management performance; HEAT-TRANSFER CHARACTERISTICS; FLOW; PERFORMANCES; OPTIMIZATION; PARAFFIN; BEHAVIOR;
D O I
10.1016/j.energy.2020.118215
中图分类号
O414.1 [热力学];
学科分类号
摘要
Thermal management systems (TMSs) are indispensable for practical applications of lithium-ion battery packs. In this study, phase change material (PCM) nano-emulsions with enhanced energy storage capacity, excellent dispersion stability, low viscosity and good thermal reliability were employed as coolants for high-performance liquid cooling thermal management systems (LCTMSs) for the first time. The maximum temperature (T-max) and maximum temperature difference (Delta T-max) in a 5S4P battery pack were measured to evaluate the thermal management performance of these coolants. When a 10 wt% OP28E nano-emulsion was used at a flow rate of 200 mL min(-1), T-max and Delta T-max were 1.1 degrees C and 0.8 degrees C, respectively, lower than those based on water, at a discharge rate of 2C. The increase in OP28E mass fraction of the nano-emulsion led to a gradual decrease in T-max and Delta T-max at identical discharge rates. Simulation studies were also conducted and validated by comparing with the experimental results. It was revealed that, T-max and Delta T-max decreased with increasing flow rate of the coolants, and the thermal management performance of the 10 wt% OP28E nano-emulsion was always better than that of water. This work sheds light on improving the performance of LCTMSs by using PCM nano-emulsions. (C) 2020 Elsevier Ltd. All rights reserved.
引用
收藏
页数:11
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