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Low GWP R134a replacements for small refrigeration (plug-in) applications

机译:低GWP R134a替代品,用于小型制冷(插入式)应用

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This paper presents a performance evaluation of two low global warming potential (GWP) refrigerants, R1234yf and R1234ze(E), as replacements for R134a. A theoretical comparison is first presented based on the thermodynamic properties of the refrigerants. Tests are carried out in a representative vending machine system (cassette) at two representative outdoor ambient temperatures of 32.2 degrees C (efficiency test), and 40.5 degrees C (capacity test) and return air temperatures of 2 degrees C, 20 degrees C and 38 degrees C. Under drop-in conditions, R1234yf shows performance similar to R134a. For R1234ze(E), a refrigerant with lower volumetric cooling capacity, testing was done using a larger compressor to obtain capacity recovery A simulation model is used to analyze the system design changes, which can lead to further improvement in the performance of low GWP refrigerants. Overall, the results indicate that with minor design changes, such as use of a suction-line/liquid-line heat exchanger and modifications to the refrigerant circuitry, these refrigerants can match the performance of R134a. (C) 2016 Elsevier Ltd and IIR. All rights reserved.
机译:本文介绍了两种低全球变暖潜能(GWP)制冷剂R1234yf和R1234ze(E)的性能评估,以替代R134a。首先根据制冷剂的热力学性质进行理论比较。测试在具有代表性的自动售货机系统(盒式磁带)中进行,分别在32.2摄氏度(效率测试)和40.5摄氏度(容量测试)的两个代表性室外环境温度和2摄氏度,20摄氏度和38摄氏度的回风温度下进行在插入条件下,R1234yf的性能类似于R134a。对于制冷量较低的制冷剂R1234ze(E),使用较大的压缩机进行了测试,以恢复容量。模拟模型用于分析系统设计变更,从而可以进一步改善低全球升温潜能值制冷剂的性能。 。总体而言,结果表明,在进行较小的设计更改(例如使用吸入管线/液体管线换热器以及对制冷剂回路进行修改)后,这些制冷剂便可以达到R134a的性能。 (C)2016 Elsevier Ltd和IIR。版权所有。

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