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Experimental study on performance characteristics of the triple fluids heat exchanger with two kinds of coolants in electric-driven air conditioning system for fuel cell electric vehicles

机译:两种燃料空调系统中三重流体热交换器性能特性的实验研究燃料电池电动汽车

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The objective of this study was to investigate performance characteristics of the triple fluids heat exchanger with two kinds of coolants, such as stack cooling and electric device's cooling, and study control logic of electric-driven air conditioning system for improving energy efficiency for a fuel cell electric vehicle. Tested triple fluids heat exchanger to transfer heat between a refrigerant and two kinds of coolants, stack cooling side with 35 % portion and electric device cooling side with 65.0 % portion of whole area, was developed to use coolant sources along with operating conditions due to different temperature ranges in a fuel cell electric vehicle. In order to analyze performance characteristics of the triple fluids heat exchanger with respect to heat transfer portion and pressure drop, electric-driven air conditioning system was installed and tested under various operating conditions for coolants, such as temperature and volume flow rate. In addition, since developed heat exchanger was used in the air conditioning system for a fuel cell vehicle, air conditioning system's performance characteristics in terms of cooling capacity and coefficient of performance (COP) was analyzed. Performance characteristics of developed heat exchanger were affected more by the refrigerant flow rate which reflected various system operating conditions, such as ambient temperature and compressor speed, than coolant's operating conditions. For the developed triple fluids heat exchanger, heat transfer rate varied from 4.5 to 8.0 kW to have cooling capacity with 5.5 kW and COP with 2.3 under the normal operating condition. Additionally, coolant-side pressure drop was more affected by coolant volume flow rate than that by coolant temperature. Heat transfer portion varied along with coolants' operating conditions due to heat transfer area difference. As a result of various tests and database, the control logic of tested system under the ambient conditions was studied.
机译:本研究的目的是研究三联流体热交换器的性能特征,具有两种冷却剂,如堆叠冷却和电气设备的冷却,以及用于提高燃料电池的能效的电动空调系统的研究控制逻辑电动车。测试的三重流体热交换器以在制冷剂和两种冷却剂之间传递热量,堆叠冷却侧,用35%部分和电气设备冷却侧,具有65.0%的整个区域,以使用冷却剂源以及由于不同的操作条件。在燃料电池电动车中的温度范围。为了对传热部分和压降分析三重流体热交换器的性能特性,在各种操作条件下安装并测试电动空调系统,用于冷却剂,例如温度和体积流速。此外,由于在用于燃料电池车辆的空调系统中使用开发的热交换器,分析了在冷却能力和性能系数(COP)方面的空调系统的性能特征。发达的热交换器的性能特性更多地受到制冷剂流速的影响,这反映了各种系统操作条件,例如环境温度和压缩机速度,而不是冷却剂的操作条件。对于开发的三重流体热交换器,传热速率从4.5〜8.0kW变化,在正常运行条件下具有5.5kW和COP的冷却能力。另外,通过冷却剂温度的冷却剂体积流量率更大,冷却剂侧压降更大。传热部分随着传热面积差而导致的冷却剂的操作条件变化。由于各种测试和数据库,研究了在环境条件下的测试系统的控制逻辑。

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