Applied thermal engineering2022,Vol.21013.DOI:10.1016/j.applthermaleng.2022.118311

Performance analysis of phase-change material in battery thermal management with bionic leaf vein structure

Liu, Fen Wang, Jianfeng Liu, Yiqun Wang, Fuqiang Chen, Yaping Lu, Yanbing Liu, Hui Du, Qian Sun, Fuzhen Yang, Na
Applied thermal engineering2022,Vol.21013.DOI:10.1016/j.applthermaleng.2022.118311

Performance analysis of phase-change material in battery thermal management with bionic leaf vein structure

Liu, Fen 1Wang, Jianfeng 1Liu, Yiqun 1Wang, Fuqiang 1Chen, Yaping 2Lu, Yanbing 1Liu, Hui 1Du, Qian 1Sun, Fuzhen 3Yang, Na1
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作者信息

  • 1. Harbin Inst Technol
  • 2. Southeast Univ
  • 3. China Acad Machinery Sci & Technol
  • 折叠

Abstract

Low thermal conductivity limits the application of phase change material (PCM) in a battery cooling system as a passive thermal management system. Leaf veins are extensively represented as a classical branching structure that absorbs heat in the energy transfer systems of plants. To improve the overall thermal conductivity, this paper proposes a PCM battery thermal management system coupled with a leaf vein fin. First, by comparing different topology parameters, a topological optimization structure using COMSOL simulation is adopted to design a bionic leaf vein fin for heat transfer. Subsequently, we perform a numerical ANSYS simulation for a PCM cooling system coupled with a leaf vein fin based on the heat generation features of a LiFePO4 battery. Consequently, the leaf vein fin coupled with PCM can efficiently remove heat from the cell surface and uniform the cell surface temperature. By comparing battery temperature and PCM melting, the leaf vein fin cooling systems demonstrates a 34.6% increase in temperature drop compared to that of the traditional rectangular fin. Eventually, the economical cooling parameters for uniformly stabilizing the cell temperature in the appropriate operating range are derived as phi = 0.4, t(w) = 26 degrees C, and d = 4 mm by comparing different volume fractions, wall temperatures, and fin thicknesses.

Key words

Battery Thermal management system/PCM/leaf vein fin/Topology optimization/HEAT-TRANSFER ENHANCEMENT/TOPOLOGY OPTIMIZATION/DESIGN/SYSTEM/DEVICES/SINKS

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出版年

2022
Applied thermal engineering

Applied thermal engineering

EISCI
ISSN:1359-4311
被引量25
参考文献量42
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