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PERFORMANCE EVALUATION OF PROTOTYPE MICROCHANNEL EVAPORATORS FOR THE RESIDENTIAL AIR-CONDITIONING APPLICATION

机译:用于住宅空调应用的原型微通道蒸发器的性能评估

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The present study was aimed to evaluate the performance of prototype microchannel evaporators for the residential air-conditioning application using R-22 refrigerant under wet condition. Eight prototype evaporators were manufactured and tested using psychrometric calorimeter test facilities. Each evaporator consisted of two or three parallel flow heat exchangers connected with return pipes. The parallel flow heat exchanger had 41 parallel microchannel tubes that brazed into the inlet and outlet headers. The tube had 8 rectangular ports with the hydraulic diameter of 1.3 mm. The louvered fin had louver angle of 27°, louver pitch of 1.4 mm and flow depth of 18.8 mm. It was found that the flow area ratio had a great effect on the cooling capacity of the microchannel evaporator from experimental results of prototypes 4, 5 and 6, and there was an appropriate range for cooling capacity. The flow distribution characteristics were slightly affected by the pressure drop resulting from the configuration of the refrigerant flow at the exit of the evaporator like merging manifold, which means that it could be possible to reduce the manufacturing cost of the microchannel evaporator. Both refrigerant and air-side pressure drops for the best prototype evaporator were 28.6 kPa and 2.53 mmAq, respectively, which could be affordable for the residential air-conditioning application.
机译:本研究的目的是评估原型微通道蒸发器的使用湿条件下R-22制冷剂的家用空调应用的性能。八个原型蒸发器进行制造,并采用温湿量热仪的测试设备进行测试。每个蒸发器由具有回流管连接的两个或三个平行流换热器。平行流换热器有41个平行的微通道管该钎焊到所述入口和出口集管。该管具有8个矩形端口与为1.3mm的液力直径。 27百叶窗式翅片民政事务百叶板角度°,为1.4mm百叶板间距和流动的18.8毫米深度。结果发现,该流动面积比率对从原型4,5和6的实验结果,所述微通道蒸发器的冷却能力有很大的影响,并有适当的范围内,用于冷却容量。流动分布特征略微通过从像合并歧管,这意味着它可以是能够减少微通道蒸发器的制造成本的蒸发器的出口处的制冷剂流路的结构而产生的压力降的影响。最佳原型蒸发器二者的制冷剂和空气侧的压降分别为28.6千帕和2.53毫米汞柱,分别,这可能是负担得起的住宅空调应用。

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