Thermodynamic Analysis of a New Air Refrigeration Cycle Combined with a Dew-point Evaporator

A new type of air refrigeration cycle combined with a dew-point indirect evaporative cooler (IEC) is proposed. Corresponding thermodynamic calculations on the new cycle were carried out. A comparative analysis was carried out with the ordinary air refrigeration cycle and NH3 vapor compression cycle....

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Main Authors: Wang Peng, Wang Chuang, Xing Ziwen
Format: Article
Language:zho
Published: Journal of Refrigeration Magazines Agency Co., Ltd. 2021-01-01
Series:Zhileng xuebao
Subjects:
Online Access:http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2021.02.077
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author Wang Peng
Wang Chuang
Xing Ziwen
author_facet Wang Peng
Wang Chuang
Xing Ziwen
author_sort Wang Peng
collection DOAJ
description A new type of air refrigeration cycle combined with a dew-point indirect evaporative cooler (IEC) is proposed. Corresponding thermodynamic calculations on the new cycle were carried out. A comparative analysis was carried out with the ordinary air refrigeration cycle and NH3 vapor compression cycle. The influences of operation conditions on the performances of the air refrigeration cycle before and after combining the dew-point IEC as well as the COP of the NH3 vapor compression cycle were analyzed. The results showed that the performance of the new air refrigeration cycle combined with the dew-point IEC was greatly improved. The maximum COP can be increased by 37.8% under the design conditions. In addition, compared to the NH3 refrigeration cycle, it can operate with simpler processes and equipment.
format Article
id doaj-art-eef3a633aa954d7088f9c8bb2713e437
institution DOAJ
issn 0253-4339
language zho
publishDate 2021-01-01
publisher Journal of Refrigeration Magazines Agency Co., Ltd.
record_format Article
series Zhileng xuebao
spelling doaj-art-eef3a633aa954d7088f9c8bb2713e4372025-08-20T03:15:50ZzhoJournal of Refrigeration Magazines Agency Co., Ltd.Zhileng xuebao0253-43392021-01-014266505985Thermodynamic Analysis of a New Air Refrigeration Cycle Combined with a Dew-point EvaporatorWang PengWang ChuangXing ZiwenA new type of air refrigeration cycle combined with a dew-point indirect evaporative cooler (IEC) is proposed. Corresponding thermodynamic calculations on the new cycle were carried out. A comparative analysis was carried out with the ordinary air refrigeration cycle and NH3 vapor compression cycle. The influences of operation conditions on the performances of the air refrigeration cycle before and after combining the dew-point IEC as well as the COP of the NH3 vapor compression cycle were analyzed. The results showed that the performance of the new air refrigeration cycle combined with the dew-point IEC was greatly improved. The maximum COP can be increased by 37.8% under the design conditions. In addition, compared to the NH3 refrigeration cycle, it can operate with simpler processes and equipment.http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2021.02.077refrigeration cyclethermodynamic analysisindirect evaporative coolerCOPnatural refrigerant
spellingShingle Wang Peng
Wang Chuang
Xing Ziwen
Thermodynamic Analysis of a New Air Refrigeration Cycle Combined with a Dew-point Evaporator
Zhileng xuebao
refrigeration cycle
thermodynamic analysis
indirect evaporative cooler
COP
natural refrigerant
title Thermodynamic Analysis of a New Air Refrigeration Cycle Combined with a Dew-point Evaporator
title_full Thermodynamic Analysis of a New Air Refrigeration Cycle Combined with a Dew-point Evaporator
title_fullStr Thermodynamic Analysis of a New Air Refrigeration Cycle Combined with a Dew-point Evaporator
title_full_unstemmed Thermodynamic Analysis of a New Air Refrigeration Cycle Combined with a Dew-point Evaporator
title_short Thermodynamic Analysis of a New Air Refrigeration Cycle Combined with a Dew-point Evaporator
title_sort thermodynamic analysis of a new air refrigeration cycle combined with a dew point evaporator
topic refrigeration cycle
thermodynamic analysis
indirect evaporative cooler
COP
natural refrigerant
url http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2021.02.077
work_keys_str_mv AT wangpeng thermodynamicanalysisofanewairrefrigerationcyclecombinedwithadewpointevaporator
AT wangchuang thermodynamicanalysisofanewairrefrigerationcyclecombinedwithadewpointevaporator
AT xingziwen thermodynamicanalysisofanewairrefrigerationcyclecombinedwithadewpointevaporator