Experimental study on the effect of spray evaporative condensation on air conditioning performance

In order to reduce the energy consumption of air conditioning units in high-temperature working conditions and improve the energy efficiency ratio of the units, this study proposes to apply the spray evaporative condensation technology to air conditioning condensers. Firstly, the water flow required...

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Main Authors: HUANG Xiang, HU Jian, SU Lin, CHU Junjie, YAN Libo, YANG Liu, WANG Xin
Format: Article
Language:zho
Published: Editorial Office of Journal of XPU 2024-10-01
Series:Xi'an Gongcheng Daxue xuebao
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Online Access:http://journal.xpu.edu.cn/en/#/digest?ArticleID=1509
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author HUANG Xiang
HU Jian
SU Lin
CHU Junjie
YAN Libo
YANG Liu
WANG Xin
author_facet HUANG Xiang
HU Jian
SU Lin
CHU Junjie
YAN Libo
YANG Liu
WANG Xin
author_sort HUANG Xiang
collection DOAJ
description In order to reduce the energy consumption of air conditioning units in high-temperature working conditions and improve the energy efficiency ratio of the units, this study proposes to apply the spray evaporative condensation technology to air conditioning condensers. Firstly, the water flow required for spraying was theoretically calculated, and the nozzles were used to cool the V-type condenser of air conditioner; then, in the standard enthalpy difference laboratory, the relevant experimernts of different distances between the nozzles and the condenser, different injection angles and intermittent spray were carried out, and the energy-saving effect of spray under different working conditions were analyzed. The results show that the spray evaporation condensation technology applied to the condenser has a better energy-saving effect. The optimal installation distance between the nozzle and condenser is 40 cm, the optimal spray angle of the nozzle is 60°, in the indoor dry bulb temperature of 37 ℃, outdoor dry/wet bulb temperature of 35/27 ℃, the energy efficiency ratio of the unit increases from 4.0 to 4.89, the energy efficiency improvement rate is 22.2%, and the energy efficiency improvement rate decreases with the drop of the outdoor temperature. The technology is more suitable for high-temperature areas. It can provide a reference for the application of the technology in air conditioner condenser.
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issn 1674-649X
language zho
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publisher Editorial Office of Journal of XPU
record_format Article
series Xi'an Gongcheng Daxue xuebao
spelling doaj-art-ef2d6288800845a98a8ce14bb87f43df2025-08-20T03:09:52ZzhoEditorial Office of Journal of XPUXi'an Gongcheng Daxue xuebao1674-649X2024-10-0138510911610.13338/j.issn.1674-649x.2024.05.014Experimental study on the effect of spray evaporative condensation on air conditioning performanceHUANG Xiang0HU Jian1SU Lin2CHU Junjie3YAN Libo4YANG Liu5WANG Xin6School of Urban Planning and Municipal Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaSchool of Urban Planning and Municipal Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaGuangdong Midea Heating & Ventilating Equipment Co. Ltd., Foshan 528311, Guangdong, ChinaSchool of Urban Planning and Municipal Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaGuangdong Midea Heating & Ventilating Equipment Co. Ltd., Foshan 528311, Guangdong, ChinaSchool of Urban Planning and Municipal Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaSchool of Urban Planning and Municipal Engineering, Xi’an Polytechnic University, Xi’an 710048, ChinaIn order to reduce the energy consumption of air conditioning units in high-temperature working conditions and improve the energy efficiency ratio of the units, this study proposes to apply the spray evaporative condensation technology to air conditioning condensers. Firstly, the water flow required for spraying was theoretically calculated, and the nozzles were used to cool the V-type condenser of air conditioner; then, in the standard enthalpy difference laboratory, the relevant experimernts of different distances between the nozzles and the condenser, different injection angles and intermittent spray were carried out, and the energy-saving effect of spray under different working conditions were analyzed. The results show that the spray evaporation condensation technology applied to the condenser has a better energy-saving effect. The optimal installation distance between the nozzle and condenser is 40 cm, the optimal spray angle of the nozzle is 60°, in the indoor dry bulb temperature of 37 ℃, outdoor dry/wet bulb temperature of 35/27 ℃, the energy efficiency ratio of the unit increases from 4.0 to 4.89, the energy efficiency improvement rate is 22.2%, and the energy efficiency improvement rate decreases with the drop of the outdoor temperature. The technology is more suitable for high-temperature areas. It can provide a reference for the application of the technology in air conditioner condenser.http://journal.xpu.edu.cn/en/#/digest?ArticleID=1509spray evaporative condensationnozzle arrangementcondensing pressurecompression ratioenergy efficiency ratio
spellingShingle HUANG Xiang
HU Jian
SU Lin
CHU Junjie
YAN Libo
YANG Liu
WANG Xin
Experimental study on the effect of spray evaporative condensation on air conditioning performance
Xi'an Gongcheng Daxue xuebao
spray evaporative condensation
nozzle arrangement
condensing pressure
compression ratio
energy efficiency ratio
title Experimental study on the effect of spray evaporative condensation on air conditioning performance
title_full Experimental study on the effect of spray evaporative condensation on air conditioning performance
title_fullStr Experimental study on the effect of spray evaporative condensation on air conditioning performance
title_full_unstemmed Experimental study on the effect of spray evaporative condensation on air conditioning performance
title_short Experimental study on the effect of spray evaporative condensation on air conditioning performance
title_sort experimental study on the effect of spray evaporative condensation on air conditioning performance
topic spray evaporative condensation
nozzle arrangement
condensing pressure
compression ratio
energy efficiency ratio
url http://journal.xpu.edu.cn/en/#/digest?ArticleID=1509
work_keys_str_mv AT huangxiang experimentalstudyontheeffectofsprayevaporativecondensationonairconditioningperformance
AT hujian experimentalstudyontheeffectofsprayevaporativecondensationonairconditioningperformance
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AT chujunjie experimentalstudyontheeffectofsprayevaporativecondensationonairconditioningperformance
AT yanlibo experimentalstudyontheeffectofsprayevaporativecondensationonairconditioningperformance
AT yangliu experimentalstudyontheeffectofsprayevaporativecondensationonairconditioningperformance
AT wangxin experimentalstudyontheeffectofsprayevaporativecondensationonairconditioningperformance