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Numerical Investigation of Design Parameters Effects on Performance of Cooling System Designed for A Lithium Ion Cell

机译:设计参数对锂离子电池设计冷却系统性能的数值研究

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摘要

A 3D numerical approach using the Finite Element Method (FEM) is applied to model the thermal behavior of multilayer 20Ah LiFePO4/Graphite cell and to design a cooling system. A three-dimensional multilayer cell model with heterogeneous thermal properties for the various cell layers is developed to study the effects of design parameters on cooling performance of mini-channel aluminum plates. As design parameters, effects of channel width, a number of channel passes, inlet mass flow rate, and heat transfer medium were considered. Using the optimized parameters, the cooling performance of water-cooling and air-cooling systems were compared. The results showed that the designed cooling system provided good cooling performance in controlling the temperature rise and uniformity. Inlet mass flow rate was the main influential parameter in controlling the cooling performance. The optimum number of channel passes was found to be seven passes. Channel width mainly controlled the pressure drop and had minor effects on temperature. At higher discharge current rates, the water-cooling system showed better cooling performance in dropping the maximum temperature and making uniform surface and inner temperature profile. Moreover, pressure drop, and power consumption rates become significantly lower for water cooling system.
机译:使用使用有限元方法(FEM)的3D数值方法来模拟多层20Ah LifePO4 /石墨电池的热行为并设计冷却系统。开发了一种具有不同细胞层的异质热性质的三维多层细胞模型,以研究设计参数对迷你通道铝板的冷却性能的影响。作为设计参数,考虑了通道宽度,沟道通道,入口质量流量和传热介质的效果。使用优化的参数,比较了水冷和空冷系统的冷却性能。结果表明,设计的冷却系统在控制温度升高和均匀性方面提供了良好的冷却性能。入口质量流量是控制冷却性能的主要影响因素。发现最佳的通道通行证数量是七次通过。通道宽度主要控制压降并对温度产生轻微影响。在更高的放电电流速率下,水冷系统显示出更好的冷却性能,使最高温度和制造均匀的表面和内部温度曲线。此外,水冷系统的压降和功耗率显着降低。

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