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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Underhood Air Duct Design to Improve A/C System Performance by Minimizing Hot Air Recirculation
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Underhood Air Duct Design to Improve A/C System Performance by Minimizing Hot Air Recirculation

机译:引擎盖下的风管设计可通过减少热空气再循环来提高空调系统的性能

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摘要

The underhood hot air recirculation greatly impacts A/C system performance at idle and low vehicle speed conditions. The hot air recirculation can raise condenser inlet air temperature in some cases as much as 18℃ above ambient, which lowers condenser cooling capacity and increases compressor work. Underhood airflow research in the following study suggests that a properly designed air duct is able to minimize hot air recirculation and improve the Compressors Coefficient of Performance (COP) at idle by 27%. This paper discusses underhood hot air recirculation testing methods, airflow distribution, air duct design concepts, as well as the cross wind and wind tunnel effects. This dedicated air duct design indicates it should improve A/C emissions, which could contribute to meeting the Environmental Protection Agency's (EPA) Green House Gas Emissions Regulations in North America.
机译:发动机罩下的热空气再循环在怠速和低车速条件下极大地影响了空调系统的性能。在某些情况下,热空气再循环可将冷凝器入口空气温度提高到比环境温度高18摄氏度,从而降低冷凝器的冷却能力并增加压缩机的工作能力。在下面的研究中,发动机罩下气流研究表明,设计合理的风道能够最大程度地减少热空气再循环并将空转时的压缩机性能系数(COP)提高27%。本文讨论引擎盖下的热空气再循环测试方法,气流分布,风道设计概念以及侧风和风洞效应。这种专用的风道设计表明它应该改善A / C排放,这可能有助于达到北美环境保护局(EPA)的《温室气体排放规定》。

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