Performance Study Of Energy Recovery System With Two Different Sizes Of Heat Exchanger Under Hot-Humid Environment

This thesis reports the theoretical and experimental analysis of energy recovery system with two different sizes of heat exchangers under hot-humid environment. The heat exchangers were made of membrane based material with cross-flow arrangement with an ability to transfer both sensible and laten...

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主要作者: Abul Rahman, Siti Masitah
格式: Thesis
语言:English
出版: 2018
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spelling my-usm-ep.609452024-08-14T02:42:19Z Performance Study Of Energy Recovery System With Two Different Sizes Of Heat Exchanger Under Hot-Humid Environment 2018-01 Abul Rahman, Siti Masitah TJ255-265 Heat engines This thesis reports the theoretical and experimental analysis of energy recovery system with two different sizes of heat exchangers under hot-humid environment. The heat exchangers were made of membrane based material with cross-flow arrangement with an ability to transfer both sensible and latent heat from hot-humid intake airstream. The two different sizes heat exchangers i.e. smaller size and bigger size were compared with theoretical and experimental analysis. In the theoretical and experimental analysis, Number of Transfer Unit-effectiveness method and ASHRAE standard method were used. The performance of the heat exchangers was analysed based on the operating parameters namely air velocity, intake temperature, relative humidity and recovered energy. The results showed that as the air velocity increased, the effectiveness of energy recovery system decreased. 2018-01 Thesis http://eprints.usm.my/60945/ http://eprints.usm.my/60945/1/Performance%20study%20of%20energy%20cut.pdf application/pdf en public masters Universiti Sains Malaysia Pusat Pengajian Teknologi Industri
institution Universiti Sains Malaysia
collection USM Institutional Repository
language English
topic TJ255-265 Heat engines
spellingShingle TJ255-265 Heat engines
Abul Rahman, Siti Masitah
Performance Study Of Energy Recovery System With Two Different Sizes Of Heat Exchanger Under Hot-Humid Environment
description This thesis reports the theoretical and experimental analysis of energy recovery system with two different sizes of heat exchangers under hot-humid environment. The heat exchangers were made of membrane based material with cross-flow arrangement with an ability to transfer both sensible and latent heat from hot-humid intake airstream. The two different sizes heat exchangers i.e. smaller size and bigger size were compared with theoretical and experimental analysis. In the theoretical and experimental analysis, Number of Transfer Unit-effectiveness method and ASHRAE standard method were used. The performance of the heat exchangers was analysed based on the operating parameters namely air velocity, intake temperature, relative humidity and recovered energy. The results showed that as the air velocity increased, the effectiveness of energy recovery system decreased.
format Thesis
qualification_level Master's degree
author Abul Rahman, Siti Masitah
author_facet Abul Rahman, Siti Masitah
author_sort Abul Rahman, Siti Masitah
title Performance Study Of Energy Recovery System With Two Different Sizes Of Heat Exchanger Under Hot-Humid Environment
title_short Performance Study Of Energy Recovery System With Two Different Sizes Of Heat Exchanger Under Hot-Humid Environment
title_full Performance Study Of Energy Recovery System With Two Different Sizes Of Heat Exchanger Under Hot-Humid Environment
title_fullStr Performance Study Of Energy Recovery System With Two Different Sizes Of Heat Exchanger Under Hot-Humid Environment
title_full_unstemmed Performance Study Of Energy Recovery System With Two Different Sizes Of Heat Exchanger Under Hot-Humid Environment
title_sort performance study of energy recovery system with two different sizes of heat exchanger under hot-humid environment
granting_institution Universiti Sains Malaysia
granting_department Pusat Pengajian Teknologi Industri
publishDate 2018
url http://eprints.usm.my/60945/1/Performance%20study%20of%20energy%20cut.pdf
_version_ 1811772864400982016