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Improvement on the energy performance of a refrigeration system adapting a plate-type heat exchanger and low-GWP refrigerants as alternatives to R134a

机译:使用板式热交换器和低全球升温潜能值制冷剂替代R134a的制冷系统的能源性能的改进

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This study is directed to propose a method for enhancing the energy parameters of the refrigeration systems operating with R134a which generally presents low performance of the units. Hence, R134a was experimentally compared with HFO-based refrigerants of R1234yf and R1234ze(E) having low-GWP. Additionally, plate-type liquid to suction heat exchanger (LSHX) was utilized in order to determine its effect on the system's energy performances. The evaporation temperatures were -9, -4.5 and 0 degrees C while the condenser temperatures were 40, 45, and 50 degrees C in the experimental work. The cooling capacity and power consumption of R1234ze(E) were noticed lower, however its COP was higher compared to R1234yf. It was also figured out that COP of the system with LSHX using R1234ze(E) was better about by 3% than that without LSHX which operated with R134a. The results of the present study indicated that the presence of LSHX caused improved COP and lower power consumption of the refrigeration system. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究旨在提出一种用于提高使用R134a运行的制冷系统的能量参数的方法,该方法通常会降低机组的性能。因此,将R134a与具有低GWP的R1234yf和R1234ze(E)的HFO基制冷剂进行了实验比较。此外,还利用板式吸液热交换器(LSHX)来确定其对系统能量性能的影响。在实验工作中,蒸发温度为-9,-4.5和0摄氏度,而冷凝器温度为40、45和50摄氏度。注意到R1234ze(E)的冷却能力和功耗较低,但与R1234yf相比,其COP较高。还发现使用R1234ze(E)的LSHX的系统的COP优于不使用R134a的LSHX的系统的COP约3%。本研究结果表明,LSHX的存在可提高制冷系统的COP并降低其能耗。 (C)2018 Elsevier Ltd.保留所有权利。

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