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An improved mini-channel based liquid cooling strategy of prismatic LiFePO_4 batteries for electric or hybrid vehicles

机译:基于棱镜Lifepo_4电池的改进的基于型液体冷却策略,用于电动或混合动力车辆

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摘要

Li-ion batteries are one of the most widely used energy storage devices owing to their relatively high energy density and power, yet they confront heating issues that lead to electrolyte fire and thermal runaway, especially in automotive applications. A well-designed thermal management system is necessary to mitigate the thermal issues occurring in high charge/discharge conditions. Keeping this in view, an ingeniously designed rectangular mini-channel cold plate is proposed to sandwich in between two consecutive 7Ah prismatic lithium iron phosphate (LiFePO4) batteries with a provision of coolant flow through the mini-channels across the cold plate to form a battery module. A numerical model for the varying channel number, channel width, coolant flow rate, coolant and ambient temperature, etc. to uphold the battery module temperature within the range of 25 degrees C-40 degrees C is developed in COMSOL Multiphysics 5.4. A detailed thermodynamic analysis suggests that a cold plate comprising 5 mini channels of width 4 mm with parallel flow design, and water entry near to the charging port with a flow rate of 0.003 kg.s(-1) and temperature of 25 degrees C as the ideal trade-off between heat transfer and pressure drop for better thermal management across the battery module. A uniform heat propagation in longitudinal direction justifies the optimum design of the cold plate.
机译:锂离子电池是由于它们相对高的能量密度和功率而最广泛使用的能量存储装置之一,但它们面对导致电解质火灾和热失控的加热问题,特别是在汽车应用中。精心设计的热管理系统是在高充电/放电条件下发生的热问题来减轻热量问题。保持这种情况下,提出了一种巧妙地设计的矩形迷你通道冷板,在两个连续的7ah棱镜锂铁磷酸盐(Lifepo4)电池之间,提供冷却剂流过冷板的迷你通道的冷却,以形成电池模块。在COMSOL Multiphysics 5.4中开发了一个不同通道数,通道宽度,冷却剂流量,冷却剂和环境温度等的数值模型。详细的热力学分析表明,冷板包含5个宽度4mm的宽度4mm的冷板,并靠近充电端口的水入口,流速为0.003kg.s(-1)和温度为25℃热传递和压力下降之间的理想权衡,用于电池模块的更好的热管理。纵向均匀的热传播证明了冷板的最佳设计。

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