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首页> 外文期刊>SAE International Journal of Materials and Manufacturing >Effect of Flash Gas Bypass on the Performance of R134a Mobile Air-Conditioning System with Microchannel Evaporator
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Effect of Flash Gas Bypass on the Performance of R134a Mobile Air-Conditioning System with Microchannel Evaporator

机译:闪蒸气体旁路对带微通道蒸发器的R134a移动空调系统性能的影响

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摘要

This paper demonstrates that the implementation of Flash Gas Bypass method can improve the performance of conventional direct expansion R134a mobile air-conditioning system with a microchannel evaporator. This method uses flash gas tank after expansion valve to separate and bypass flash refrigerant vapor around the evaporator, and feed the evaporator with only liquid refrigerant. Pressure drop is reduced and refrigerant distribution is significantly improved, resulting in higher evaporator effectiveness and evaporation pressure. Both lower pressure drop and lifted evaporation pressure allows the compressor to work with lower pressure ratio, saving required compressor work. An experimental comparison of the direct expansion system shows that Flash Gas Bypass method increases the cooling capacity and COP at the same time by up to 16% and 11%, respectively. Thus, the implementation of this method is very promising for the system using a microchannel evaporator which is especially very sensitive to the refrigerant side maldistribution.
机译:本文证明了闪蒸气体旁路方法的实施可以改善常规的带微通道蒸发器的直接膨胀R134a移动空调系统的性能。该方法使用膨胀阀后的闪蒸气罐来分离和绕过蒸发器周围的闪蒸制冷剂蒸气,并仅向蒸发器提供液态制冷剂。减少了压降,大大改善了制冷剂分布,从而提高了蒸发器的效率和蒸发压力。较低的压降和升高的蒸发压力都允许压缩机以较低的压力比工作,从而节省了所需的压缩机工作。直接膨胀系统的实验比较表明,闪蒸旁路法可同时将制冷量和COP分别提高16%和11%。因此,该方法的实施对于使用微通道蒸发器的系统是非常有前途的,该蒸发器对制冷剂侧的分布不均特别敏感。

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