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Enhancement of condensate water quantity and coefficient of performance of an air conditioning system: An experimental study

机译:增强空调系统的冷凝水量和效率系数:实验研究

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The objective of the present work is to increase the quantity of condensate water from atmospheric air during the air conditioning (A/C) process by using two techniques: increasing moisture content in atmospheric air by adding steam and passing compressed air instead of atmospheric air, respectively. The experiment was performed with both capillary valve and thermostatic expansion valve operations for assessing the volume flow rates (VFRs) of condensate and coefficient of performance (COP) concerning the air A/C arrangement. The control valve operated for the steam supply case was at half valve opening and one-fourth opening, respectively. The R-22 refrigerant was used in this study. From this study, it was perceived that the condensate water quantity was increased by adding the moisture to the inlet air for the A/C system simultaneously with the usage of compressed air. Furthermore, the COP of the system was also compared to normal atmospheric air admission conditions. The compressed air and steam admission to the A/C system has shown a tremendous increase in COP together with the VFR of the system rather than atmospheric air admission conditions.
机译:本作工作的目的是通过使用两种技术在空调(A / C)过程中增加大气空气的冷凝水量:通过添加蒸汽并通过大气空气来增加大气空气中的水分含量,而不是大气空气,分别。用毛细管阀和恒温膨胀阀操作进行实验,用于评估缩合物的体积流量(VFR)和关于空气A / C布置的性能系数(COP)。用于蒸汽供应壳体的控制阀分别处于半阀开口和四分之一开口。在本研究中使用R-22制冷剂。从该研究中,鉴定它通过使用压缩空气的使用将水分与A / C系统的入口空气添加到Inlet空气中,增加了冷凝水量。此外,该系统的COP也与正常大气吸入条件进行了比较。 A / C系统的压缩空气和蒸汽进入已经显示出COP的巨大增加,以及系统的VFR而不是大气空气入场条件。

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