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Performance study of water-to-water heat pump using non-azeotropic refrigerant mixtures R407C

机译:使用非共沸混合制冷剂R407C的水对水热泵的性能研究

摘要

This paper compares the performance of the refrigerant R22 and the non-ozone depleting R407C for high temperature heat pump heat recovery application. While most reported works were conducted on residential heat pumps with evaporating temperature below zero degree Celsius, this study considers higher evaporating temperatures, from 5 to 35 degrees Celsius. The comparison was made by theoretical cycle calculation with variable heating and cooling capacities and at different temperatures. The experimental results of R407C were compared with the existing R22 refrigerant to explore the potential for retrofitting existing installations. It has been found that both the thermodynamic properties and general performance of R407C are comparable with that of R22. The operational behavior of R407C was found better with the increasing condensation and evaporation temperature. It has also been observed that the heating capacity of the refrigerant R407C is 5 higher than that of R22. When the compression ratio exceeds 3, at high evaporating temperatures, the coefficient of performance with R407C is greater than that obtained with R22. Therefore, R407C is a good substitute for R22 in all applications requiring high evaporation temperatures, such as air-conditioning plants and heat pumps for heat recovery.
机译:本文比较了制冷剂R22和消耗臭氧层的R407C在高温热泵热回收应用中的性能。尽管大多数报道的工作都是在蒸发温度低于零摄氏度的住宅热泵上进行的,但这项研究认为蒸发温度更高,从5摄氏度到35摄氏度。通过理论循环计算在不同温度下具有可变的加热和冷却能力进行了比较。将R407C的实验结果与现有的R22制冷剂进行了比较,以探索改造现有设备的潜力。已经发现,R407C的热力学性质和一般性能均与R22相当。随着冷凝和蒸发温度的升高,发现R407C的操作性能更好。还已经观察到,制冷剂R407C的热容量比R22的热容量高5。当压缩比超过3时,在高蒸发温度下,R407C的性能系数大于R22的性能系数。因此,在所有需要高蒸发温度的应用中,例如空调设备和用于回收热量的热泵,R407C都是R22的良好替代品。

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