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Numerical Study of Thermal Behavior of Phase Change Material for Thermal Management of Cylindrical Power Batteries

机译:圆柱动力电池热管理用相变材料热行为的数值研究

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Phase change materials have been of increasing interest in thermal management of power batteries due to their high latent heat with minimum volume change. In this work, a numerical study of phase change materials is presented for the purpose of thermal control of the cylindrical power battery cells for applications in electric vehicles. Uniform heat density was applied at the battery cell surrounded by phase change material (PCM) of paraffin wax type contained in a metal housing. A two-dimensional cylindrical model was considered due to the model symmetry. The effects of power densities, heat transfer coefficients and onset melting temperatures were examined for the battery temperature evolution. Temperature plateaus can be observed from the present numerical analysis for the pure PCM cases, and the temperature level depending on the power densities, heat transfer coefficients, melting temperatures. In addition, the copper foam of high thermal conductivity was inserted into the PCM to enhance the heat transfer. The local thermal non-equilibrium between the metal foam and the PCM was taken into account in the numerical modeling. The significant thermal enhancement with copper foam was observed with lowered battery temperature.
机译:相变材料由于其高潜热且体积变化最小,因此在动力电池的热管理中受到越来越多的关注。在这项工作中,进行了相变材料的数值研究,目的是对电动汽车中的圆柱形动力电池进行热控制。将均匀的热密度施加到被金属外壳中包含的石蜡类型的相变材料(PCM)包围的电池上。由于模型对称,因此考虑了二维圆柱模型。检查功率密度,传热系数和起始熔化温度对电池温度变化的影响。从目前的纯PCM情况的数值分析中可以观察到温度平稳,温度水平取决于功率密度,传热系数,熔化温度。另外,将高导热率的铜泡沫插入PCM中以增强热传递。在数值模拟中考虑了金属泡沫和PCM之间的局部热不平衡。在降低电池温度的情况下,观察到泡沫铜的显着热增强。

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