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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Development and validation of a microchannel evaporator model for a CO_2 air-conditioning system
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Development and validation of a microchannel evaporator model for a CO_2 air-conditioning system

机译:CO_2空调系统微通道蒸发器模型的开发和验证

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This paper presents an analysis/computer model to predict the performance of an evaporator for a CO_2 mobile air-conditioning system. Based on the finite volume method, the model has been developed using mass and energy conservation equations, with emphasis placed on the refrigerant-side heat transfer and pressure drop characteristics. Moreover, the pressure losses both in the headers and at the port inlet of the microchannel tube were also considered. The in-tube refrigerant flow was divided into two-phase region and superheated region, and both dry and wet conditions were considered. Using the newly developed refrigerant-side heat transfer and pressure drop correlations, the model can predict the performance of evaporator with a reasonable accuracy compared with the experimental data. The errors of RMS for cooling capacities and refrigerant-side pressure drops were ±1.9% and ±12.3%, respectively. Furthermore, the effects selecting different refrigerant-side heat transfer and pressure drop models on the performance of evaporator were discussed. The program can be used to analyze and design a CO_2 microchannel evaporator.
机译:本文提出了一种分析/计算机模型来预测CO_2移动空调系统的蒸发器性能。基于有限体积法,已使用质量和能量守恒方程开发了该模型,重点放在制冷剂侧的传热和压降特性上。此外,还考虑了集管和微通道管端口入口处的压力损失。管内制冷剂流分为两相区和过热区,并考虑了干燥和潮湿条件。使用新开发的制冷剂侧传热和压降相关性,该模型可以与实验数据相比以合理的精度预测蒸发器的性能。制冷量和制冷剂侧压降的RMS误差分别为±1.9%和±12.3%。此外,还讨论了选择不同制冷剂侧传热和压降模型对蒸发器性能的影响。该程序可用于分析和设计CO_2微通道蒸发器。

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