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Comparison of the Heat Transfer Capabilities of Conventional Single- and Two-Phase Cooling Systems for an Electric Vehicle IGBT Power Module

机译:电动车辆IGBT功率模块传统单相冷却系统传热能力的比较

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This paper presents a comparison of conventional single-phase water/glycol liquid and innovative two-phase cooling technology for thermal management of high-power electronics automotive insulated-gate bipolar transistor modules during a full drive cycle. The proposed two-phase cooling system is built using conventional automotive air conditioning components (a condenser, an expansion valve, a compressor, and vapor and liquid lines) and a conventional cold plate as used for single-phase cooling; thus, the design does not require the development of new technology for its implementation. Three-dimensional numerical simulation in COMSOL and experimental results of two-phase cooling have been obtained on a prototype and compared to conventional water/glycol cooling high-power electronics modules, with a considerable improvement on working temperature, power transfer capacity, and equalization of die temperatures during a full driving cycle. These results suggest that two-phase cooling using the same cold plates as in single-phase cooling can be used to substantially improve the performance and reliability of electric vehicle power converters without major changes.
机译:本文介绍了在全驱动周期内的高功率电子汽车绝缘栅双极晶体管模块的热管理的传统单相水/乙二醇液和创新两相冷却技术的比较。所提出的两相冷却系统采用传统的汽车空调部件(冷凝器,膨胀阀,压缩机和蒸气和液管)和用于单相冷却的传统冷板建造;因此,设计不需要开发新技术的实现。在原型上获得了COMSOL中的三维数值模拟和两相冷却的实验结果,并与传统的水/乙二醇冷却大功率电子模块相比,工作温度,功率传输容量和均衡相比在完全驾驶周期内的温度。这些结果表明,使用与单相冷却相同的冷板的两相冷却可用于显着提高电动车辆功率转换器的性能和可靠性而无需重大变化。

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