Experimental results and analysis of throttling refrigeration with ternary mixed refrigerant

In-depth analysis of the influence of mixed working fluids on the thermodynamic performance of a throttling refrigeration cycle through experimental research. After optimizing the calculation of two ternary mixed working fluids with different compositions, the charging test is carried out, and the t...

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Main Authors: Ruonan Wang, Bin Liu, Haodong Liu
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/12/e3sconf_icersd2020_01008.pdf
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spelling doaj-c207aa697fa84f079dc3c59bb74231592021-02-18T10:43:15ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012360100810.1051/e3sconf/202123601008e3sconf_icersd2020_01008Experimental results and analysis of throttling refrigeration with ternary mixed refrigerantRuonan Wang0Bin Liu1Haodong Liu2Tianjin University of CommerceTianjin University of CommerceTianjin University of CommerceIn-depth analysis of the influence of mixed working fluids on the thermodynamic performance of a throttling refrigeration cycle through experimental research. After optimizing the calculation of two ternary mixed working fluids with different compositions, the charging test is carried out, and the throttle characteristic curve of the mixed working fluid the law of temperature and pressure changes in the experiment was analyzed. The results show that: a mixed working fluid with a mixing ratio of 30.39mol% R14, 10.73mol% R170 and 58.87mol% R600A, at a pressure ratio of 2.5/0.1, a low temperature of -67.7°C is obtained, and the cooling time is 113.42min. The refrigeration system COP is 0.076; the mixing ratio is 30.39mol%R14, 15.73mol%R23 and 53.87mol%R600A mixed working fluid, in the case of a pressure ratio of 2.14/0.1, a low temperature of -76.4°C is obtained, and the cooling time is 160min, the refrigeration system COP is 0.106.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/12/e3sconf_icersd2020_01008.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Ruonan Wang
Bin Liu
Haodong Liu
spellingShingle Ruonan Wang
Bin Liu
Haodong Liu
Experimental results and analysis of throttling refrigeration with ternary mixed refrigerant
E3S Web of Conferences
author_facet Ruonan Wang
Bin Liu
Haodong Liu
author_sort Ruonan Wang
title Experimental results and analysis of throttling refrigeration with ternary mixed refrigerant
title_short Experimental results and analysis of throttling refrigeration with ternary mixed refrigerant
title_full Experimental results and analysis of throttling refrigeration with ternary mixed refrigerant
title_fullStr Experimental results and analysis of throttling refrigeration with ternary mixed refrigerant
title_full_unstemmed Experimental results and analysis of throttling refrigeration with ternary mixed refrigerant
title_sort experimental results and analysis of throttling refrigeration with ternary mixed refrigerant
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description In-depth analysis of the influence of mixed working fluids on the thermodynamic performance of a throttling refrigeration cycle through experimental research. After optimizing the calculation of two ternary mixed working fluids with different compositions, the charging test is carried out, and the throttle characteristic curve of the mixed working fluid the law of temperature and pressure changes in the experiment was analyzed. The results show that: a mixed working fluid with a mixing ratio of 30.39mol% R14, 10.73mol% R170 and 58.87mol% R600A, at a pressure ratio of 2.5/0.1, a low temperature of -67.7°C is obtained, and the cooling time is 113.42min. The refrigeration system COP is 0.076; the mixing ratio is 30.39mol%R14, 15.73mol%R23 and 53.87mol%R600A mixed working fluid, in the case of a pressure ratio of 2.14/0.1, a low temperature of -76.4°C is obtained, and the cooling time is 160min, the refrigeration system COP is 0.106.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/12/e3sconf_icersd2020_01008.pdf
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AT binliu experimentalresultsandanalysisofthrottlingrefrigerationwithternarymixedrefrigerant
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