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首页> 外文期刊>International Journal of Refrigeration >Historical and present developments of ejector refrigeration systems with emphasis on transcritical carbon dioxide air-conditioning applications
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Historical and present developments of ejector refrigeration systems with emphasis on transcritical carbon dioxide air-conditioning applications

机译:喷射器制冷系统的历史和当前发展,重点是跨临界二氧化碳空调应用

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摘要

This paper gives an overview of historical and present developments on how ejectors can be utilized to improve the performance of air-conditioning and refrigeration systems. Research on ejector refrigeration cycles that utilize low-grade energy sources to produce cooling is summarized. Another major class of ejector refrigeration cycles that is described tries to recover expansion work by means of a two-phase ejector. This particular approach appears to be very promising for transcritical carbon dioxide (CO_2, R744) systems with inherently large throttling losses. The paper further presents the latest analytical and experimental results of a comprehensive study carried out to investigate possible performance improvements of transcritical R744 two-phase ejector systems. Relevant operational parameters were varied and effects on performance resulting from different ejector geometries were studied as well. Two-phase mixing shock waves inside the ejector were detected by recoding static wall pressure distributions.
机译:本文概述了如何利用喷射器改善空调和制冷系统性能的历史和当前发展。总结了利用低等级能源产生冷却的喷射器制冷循环的研究。所述的喷射器制冷循环的另一主要类别试图通过两相喷射器来恢复膨胀功。对于跨界二氧化碳(CO_2,R744)具有固有节流损失的系统而言,这种特殊方法似乎非常有前途。本文还提供了一项全面研究的最新分析和实验结果,旨在研究跨临界R744两相喷射器系统的性能改进。改变了相关的操作参数,并研究了不同喷射器几何形状对性能的影响。通过记录静态壁压力分布来检测喷射器内部的两相混合冲击波。

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