Enhancement of the Heat Transfer Efficiency of Closed Wet Cooling Tower by a Water Spray Method

This research aimed to enhance the heat transfer efficiency of 200 TR (Ton of Refrigeration) closed wet cooling tower. According to the study, it was found that one factor that had effects on heat transfer was atmosphere temperature during 01:00-04:00 p.m. Summer temperature in Thailand which...

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Main Authors: Siripol Tongorn, Chantima Rewlay-ngoen, Seksan Papong
Format: Article
Language:English
Published: Mahasarakham University 2021-06-01
Series:Science Technology and Engineering Journal (STEJ)
Subjects:
Online Access:https://ph02.tci-thaijo.org/index.php/stej/article/view/241721/165659
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spelling doaj-e8912a2a756b4788a6b43073fe3707be2021-09-22T03:09:32ZengMahasarakham University Science Technology and Engineering Journal (STEJ)2697-61102697-60722021-06-01711221Enhancement of the Heat Transfer Efficiency of Closed Wet Cooling Tower by a Water Spray MethodSiripol Tongorn0Chantima Rewlay-ngoen1Seksan Papong2Mechanical Engineering, Faculty of Engineering, Rajamangala University of Technology Phra Nakhon, Bangkok, 10300, ThailandMechanical Engineering, Faculty of Engineering, Rajamangala University of Technology Phra Nakhon, Bangkok, 10300, ThailandTechnology and Informatics Institute for Sustainability, National Science and Technology Development Agency (NSTDA), Thailand Science Park, Pathum Thani, 12120, ThailandThis research aimed to enhance the heat transfer efficiency of 200 TR (Ton of Refrigeration) closed wet cooling tower. According to the study, it was found that one factor that had effects on heat transfer was atmosphere temperature during 01:00-04:00 p.m. Summer temperature in Thailand which is higher than 36 ºC reduces the efficiency of heat transfer. To solve this problem, the researcher enhanced the efficiency by reducing the temperature around thermoelectric coolers by spraying water particles between 20–70 micron with a water flow rate of 20 liters per minute and spray distance of 20, 30, 40, 50, and 60 centimeters. The results showed that at the spray distance of 30 centimeters, the temperature could be reduced to a maximum of about 2.74 ºC. Secondly, a spray distance of 40 centimeters could reduce the temperature by approximately 2.23 ºC. Lastly, at the distance of 20 and 50 centimeters, the temperature was approximately reduced 2 .06 ºC and 1.68 ºC, subsequently. However, a spray distance of 60 centimeters could not reduce the temperature of heat exchange. When analyzing a break-even point, it was found that a payback period was about seven months. These results could be applied as guidelines to enhance the efficiency of heat transfer in factories, but the water flow rate used for spraying should be additionally studied.https://ph02.tci-thaijo.org/index.php/stej/article/view/241721/165659water coolingwater spray methodcooling tower
collection DOAJ
language English
format Article
sources DOAJ
author Siripol Tongorn
Chantima Rewlay-ngoen
Seksan Papong
spellingShingle Siripol Tongorn
Chantima Rewlay-ngoen
Seksan Papong
Enhancement of the Heat Transfer Efficiency of Closed Wet Cooling Tower by a Water Spray Method
Science Technology and Engineering Journal (STEJ)
water cooling
water spray method
cooling tower
author_facet Siripol Tongorn
Chantima Rewlay-ngoen
Seksan Papong
author_sort Siripol Tongorn
title Enhancement of the Heat Transfer Efficiency of Closed Wet Cooling Tower by a Water Spray Method
title_short Enhancement of the Heat Transfer Efficiency of Closed Wet Cooling Tower by a Water Spray Method
title_full Enhancement of the Heat Transfer Efficiency of Closed Wet Cooling Tower by a Water Spray Method
title_fullStr Enhancement of the Heat Transfer Efficiency of Closed Wet Cooling Tower by a Water Spray Method
title_full_unstemmed Enhancement of the Heat Transfer Efficiency of Closed Wet Cooling Tower by a Water Spray Method
title_sort enhancement of the heat transfer efficiency of closed wet cooling tower by a water spray method
publisher Mahasarakham University
series Science Technology and Engineering Journal (STEJ)
issn 2697-6110
2697-6072
publishDate 2021-06-01
description This research aimed to enhance the heat transfer efficiency of 200 TR (Ton of Refrigeration) closed wet cooling tower. According to the study, it was found that one factor that had effects on heat transfer was atmosphere temperature during 01:00-04:00 p.m. Summer temperature in Thailand which is higher than 36 ºC reduces the efficiency of heat transfer. To solve this problem, the researcher enhanced the efficiency by reducing the temperature around thermoelectric coolers by spraying water particles between 20–70 micron with a water flow rate of 20 liters per minute and spray distance of 20, 30, 40, 50, and 60 centimeters. The results showed that at the spray distance of 30 centimeters, the temperature could be reduced to a maximum of about 2.74 ºC. Secondly, a spray distance of 40 centimeters could reduce the temperature by approximately 2.23 ºC. Lastly, at the distance of 20 and 50 centimeters, the temperature was approximately reduced 2 .06 ºC and 1.68 ºC, subsequently. However, a spray distance of 60 centimeters could not reduce the temperature of heat exchange. When analyzing a break-even point, it was found that a payback period was about seven months. These results could be applied as guidelines to enhance the efficiency of heat transfer in factories, but the water flow rate used for spraying should be additionally studied.
topic water cooling
water spray method
cooling tower
url https://ph02.tci-thaijo.org/index.php/stej/article/view/241721/165659
work_keys_str_mv AT siripoltongorn enhancementoftheheattransferefficiencyofclosedwetcoolingtowerbyawaterspraymethod
AT chantimarewlayngoen enhancementoftheheattransferefficiencyofclosedwetcoolingtowerbyawaterspraymethod
AT seksanpapong enhancementoftheheattransferefficiencyofclosedwetcoolingtowerbyawaterspraymethod
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