Development of Polymer Plate Heat Exchanhers for Outdoors Telecom Cabinet Cooling Systems
碩士 === 國立中央大學 === 機械工程學系 === 104 === Air-to-air heat exchanger is generally used in the telecom equipment cabinet to divide the outside and inside air streams and exchange heat between these two air streams. Thin aluminium plates with ripple surface and protrusion are commonly used in these kinds of...
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ndltd-TW-104NCU054890292017-07-09T04:30:32Z http://ndltd.ncl.edu.tw/handle/48020910174236441084 Development of Polymer Plate Heat Exchanhers for Outdoors Telecom Cabinet Cooling Systems 空氣對空器在塑膠板式熱交換器之性能測試分析 Ling Chiang 姜羚 碩士 國立中央大學 機械工程學系 104 Air-to-air heat exchanger is generally used in the telecom equipment cabinet to divide the outside and inside air streams and exchange heat between these two air streams. Thin aluminium plates with ripple surface and protrusion are commonly used in these kinds of heat exchangers. This study provides a heat transfer enhancement design and experimental analysis of thin plastic air-to-air heat exchangers. Two plastic plate heat exchangers, one with 65o chevron angle and the other with chevron angle of 30o in the main stream and 65o in the inlet and exit passages was designed and tested. From the experimental results, we found that the chevron flow passage is able to significantly enhance the heat exchangers’ heat transfer performance. The 30o+65o chevron heat exchanger provides a lower pressure drop but higher heat transfer performance than other two heat exchangers. It is the optimal design for air-to-air heat transfer in the range tested. Chien-Yuh Yang 楊建裕 2016 學位論文 ; thesis 90 zh-TW |
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碩士 === 國立中央大學 === 機械工程學系 === 104 === Air-to-air heat exchanger is generally used in the telecom equipment cabinet to divide the outside and inside air streams and exchange heat between these two air streams. Thin aluminium plates with ripple surface and protrusion are commonly used in these kinds of heat exchangers. This study provides a heat transfer enhancement design and experimental analysis of thin plastic air-to-air heat exchangers. Two plastic plate heat exchangers, one with 65o chevron angle and the other with chevron angle of 30o in the main stream and 65o in the inlet and exit passages was designed and tested. From the experimental results, we found that the chevron flow passage is able to significantly enhance the heat exchangers’ heat transfer performance. The 30o+65o chevron heat exchanger provides a lower pressure drop but higher heat transfer performance than other two heat exchangers. It is the optimal design for air-to-air heat transfer in the range tested.
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author2 |
Chien-Yuh Yang |
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Chien-Yuh Yang Ling Chiang 姜羚 |
author |
Ling Chiang 姜羚 |
spellingShingle |
Ling Chiang 姜羚 Development of Polymer Plate Heat Exchanhers for Outdoors Telecom Cabinet Cooling Systems |
author_sort |
Ling Chiang |
title |
Development of Polymer Plate Heat Exchanhers for Outdoors Telecom Cabinet Cooling Systems |
title_short |
Development of Polymer Plate Heat Exchanhers for Outdoors Telecom Cabinet Cooling Systems |
title_full |
Development of Polymer Plate Heat Exchanhers for Outdoors Telecom Cabinet Cooling Systems |
title_fullStr |
Development of Polymer Plate Heat Exchanhers for Outdoors Telecom Cabinet Cooling Systems |
title_full_unstemmed |
Development of Polymer Plate Heat Exchanhers for Outdoors Telecom Cabinet Cooling Systems |
title_sort |
development of polymer plate heat exchanhers for outdoors telecom cabinet cooling systems |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/48020910174236441084 |
work_keys_str_mv |
AT lingchiang developmentofpolymerplateheatexchanhersforoutdoorstelecomcabinetcoolingsystems AT jiānglíng developmentofpolymerplateheatexchanhersforoutdoorstelecomcabinetcoolingsystems AT lingchiang kōngqìduìkōngqìzàisùjiāobǎnshìrèjiāohuànqìzhīxìngnéngcèshìfēnxī AT jiānglíng kōngqìduìkōngqìzàisùjiāobǎnshìrèjiāohuànqìzhīxìngnéngcèshìfēnxī |
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