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HEV Battery Pack Thermal Management Design and Packaging Solutions

机译:HEV电池组热管理设计和包装解决方案

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Hybrid Electric Vehicles (HEV) utilize a High Voltage (HV) battery pack to improve fuel economy by maximizing the capture of vehicle kinetic energy for reuse. Consequently, these HV battery packs experience frequent and rapid charge-discharge cycles. The heat generated during these cycles must be managed effectively to maintain battery cell performance and cell life. The HV battery pack cooling system must keep the HV battery pack temperature below a design target value and maintain a uniform temperature across all of the cells in the HV battery pack. Herein, the authors discuss some of the design points of the air cooled HV battery packs in Ford Motor Company’s current model C-Max and Fusion HEVs. In these vehicles, the flow of battery cooling air was required to not only provide effective cooling of the battery cells, but to simultaneously cool a direct current high voltage to low voltage (DC-DC) converter module. In addition to the fundamental heat transfer goals, the design team overcame package challenges on cooling air flow distribution to both cell arrays and DC-DC convertor and air rush concerns. This paper describes the work the team completed to successfully balance the design requirements.
机译:混合动力电动车辆(HEV)利用高压(HV)电池组,通过最大化车辆动能以进行再利用来改善燃料经济性。因此,这些HV电池组经历了频繁和快速充电的循环。必须有效地管理在这些循环期间产生的热量以保持电池单元性能和细胞寿命。 HV电池组冷却系统必须使HV电池组温度低于设计目标值,并在HV电池组中的所有电池中保持均匀的温度。在此,作者讨论了福特电机公司目前模型C-MAX和融合HEV的空气冷却HV电池组的一些设计点。在这些车辆中,需要电池冷却空气的流动,不仅需要提供有效的电池电池的冷却,而且还需要对低电压(DC-DC)转换器模块同时冷却直流的高电压。除了基本的传热目标外,设计团队还将包装挑战挑战用于冷却空气流量分布到电池阵列和DC-DC转换器和空中匆忙问题。本文介绍了团队完成以成功平衡设计要求的工作。

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