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Transcritical CO_2 Refrigeration Cycle with Ejector-Expansion Device

机译:带喷射器扩展装置的跨临界CO_2制冷循环

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摘要

An ejector expansion transcritical CO_2 refrigeration cycle is proposed to improve the COP of the basic transcritical CO_2 cycle by reducing the expansion process losses. A constant pressure mixing model for the ejector was established to perform the thermodynamic analysis of the ejector expansion transcritical CO_2 cycle. The effect of the entrainment ratio and the pressure drop in the receiving section of the ejector on the relative performance of the ejector expansion transcritical CO_2 cycle was investigated for typical air conditioning operation conditions. The effect of different operating conditions on the relative performance of the ejector expansion transcritical CO_2 cycle was also investigated using assumed values for the entrainment ratio and pressure drop in the receiving section of the ejector. It was found that the COP of the ejector expansion transcritical CO_2 cycle can be improved by more than 16% over the basic transcritical CO_2 cycle for typical air conditioning operation conditions.
机译:提出了一种喷射器膨胀跨临界CO_2制冷循环,以通过减少膨胀过程的损失来提高基本跨临界CO_2循环的COP。建立了喷射器的恒压混合模型,以进行喷射器膨胀跨临界CO_2循环的热力学分析。对于典型的空调操作条件,研究了夹带率和喷射器接收部分中的压降对喷射器膨胀跨临界CO_2循环的相对性能的影响。还使用喷射器接收部分中的夹带率和压降的假定值,研究了不同工况对喷射器膨胀跨临界CO_2循环的相对性能的影响。已经发现,对于典型的空调操作条件,喷射器膨胀跨临界CO_2循环的COP可以比基本跨临界CO_2循环提高16%以上。

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