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Thermodynamic Analysis of Two-Phase Ejector as Expansion Device with Dual Evaporator Temperatures on Split Type Air Conditioning Systems

机译:双相喷射器作为膨胀装置的热力学分析,双蒸发器温度对分流式空调系统

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This paper presents a numerical and experimental study of increasing the performance coefficient (COP) of split AC (SAC) by reducing compressor work and increasing coolmg capacity. Two phase ejector as an expansion device with a new design of dual evaporator temperature used, numerical methods apply the mathematical model developed in the EES software that is applied. Thermodynamic analysis is carried out to achieve ASHRAE Standard requirements for a minimum SAC with COP application of 3.5. The SAC system is filled with R-290 as a thermal fluid medium. Based on the simulation results a numerical model of the ejector is then produced and installed in a modified SAC system of cooling capacity of at least 9000 BTU/hour. An experimental test was conducted to investigate the actual performance of the ejector and its effect on the performance of the SAC system The results showed that the two phase ejector with the new design of the dual evaporator temperature system was successful. When compared to standard split air conditioners using capillary tube expansion devices the tested ejector system contributes around 35% of power savings. The COP of the system can reach 5.5 which accounts for 39% of the increase in performance.
机译:本文介绍了通过减少压缩机工作和增加酷炫容量来提高分裂交流(SAC)性能系数(COP)的数值和实验研究。两相喷射器作为扩展装置,具有新设计的双蒸发器温度设计,数值方法应用了应用的EES软件中开发的数学模型。进行热力学分析,以实现ASHRAE标准要求,对COP应用为3.5。 SAC系统填充有R-290作为热流体介质。基于仿真结果,然后产生喷射器的数值模型并安装在改进的SAC系统中,冷却能力至少为9000 BTU /小时。进行了实验测试以研究喷射器的实际性能及其对囊系统性能的影响结果表明,两相喷射器具有新设计的双蒸发器温度系统成功。与使用毛细管膨胀装置的标准分流空调相比,测试的喷射器系统占节电的35%。系统的警察可以达到5.5,占表现增加的39%。

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