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Analysis of two-phase ejector performance metrics and comparison of R134a and CO2 ejector performance

机译:分析两相喷射器性能指标并比较R134a和CO2喷射器性能

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摘要

Two-phase ejector studies in recent years have shown that the performance of an ejector cycle is strongly dependent on the performance of the ejector. However, measuring the performance of a two-phase ejector is not always straightforward. In the present study, several different metrics that have been proposed for measuring the performance of ejectors are presented and analyzed. Performance metrics originally proposed for single-phase ejectors as well as those proposed specifically for two-phase ejectors are both considered. A simple numerical ejector model is used to simulate ejector operation and calculate the performance of the ejector based on the various performance metrics. The various ejector performance metrics are then compared based on the numerical results. Experimental data from previous studies for R134a and CO2 two-phase ejectors is also presented, and the ejector performance metrics are compared based on the available experimental data as well. It is seen that for a given ejector operating point, the different performance metrics can yield very different values. Based on the data from available ejector studies, it seems that CO2 ejectors can achieve somewhat better performance than R134a ejectors. It is also seen that better ejector performance does not necessarily correlate to better ejector cycle performance.
机译:近年来,对两相喷射器的研究表明,喷射器循环的性能在很大程度上取决于喷射器的性能。但是,测量两相喷射器的性能并不总是那么简单。在本研究中,提出并分析了几种用于测量喷射器性能的不同指标。均考虑了最初为单相喷射器建议的性能指标以及专门为两相喷射器建议的性能指标。一个简单的数字弹出器模型用于模拟弹出器操作并根据各种性能指标计算弹出器的性能。然后根据数值结果比较各种喷射器性能指标。还介绍了先前研究的R134a和CO2两相喷射器的实验数据,并根据可用的实验数据对喷射器性能指标进行了比较。可以看出,对于给定的喷射器工作点,不同的性能指标可以产生非常不同的值。根据现有喷射器研究的数据,似乎二氧化碳喷射器比R134a喷射器性能更好。还可以看出,更好的喷射器性能并不一定与更好的喷射器循环性能相关。

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