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Ejector design and theoretical study of R134a ejector refrigeration cycle

机译:R134a喷射器制冷循环的喷射器设计与理论研究

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摘要

In the present paper, a mathematical model is developed to design R134a ejector and to predict the performance characteristics of a vapor jet refrigeration system over a wide range of the investigated parameters. These parameters include boiling temperature (65-85℃), condensing temperature (25-40℃), evaporating temperature (0-10℃), degrees of superheat (0-15℃), nozzle efficiency (0.75-0.95) and diffuser efficiency (0.75-0.95). Simulated results showed that the present model data are in good agreement with experimental data in the literature with an average error of 6%. It is found that the ejector area ratio at boiling temperature of 85℃ is about double that at boiling temperature of 65℃ for various evaporating and condensing temperatures. The present results confirm that waste heat sources of temperature ranging from 65 to 85℃ are adequate to operate vapor jet refrigeration system for air-conditioning applications.
机译:在本文中,开发了一个数学模型来设计R134a喷射器并预测在广泛研究参数范围内的蒸汽喷射制冷系统的性能特征。这些参数包括沸腾温度(65-85℃),冷凝温度(25-40℃),蒸发温度(0-10℃),过热度(0-15℃),喷嘴效率(0.75-0.95)和扩散器效率(0.75-0.95)。仿真结果表明,该模型数据与文献中的实验数据吻合较好,平均误差为6%。发现在各种蒸发和冷凝温度下,沸腾温度为85℃时喷射器的面积比约为沸腾温度为65℃时的喷射器面积比的两倍。目前的结果证实,温度为65至85℃的废热源足以运行用于空调应用的蒸汽喷射制冷系统。

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