Studies of an air cooler under frost condition
Frost accumulation on an air cooler, a direct result of combined heat and mass transfer between the moist air flowing across a cold surface, causes heat transfer performance degradation due to the insulating effect of frost layer and the coil blockage as the frost grows. The complex geometry of fin...
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sg-ntu-dr.10356-65572023-03-11T18:08:41Z Studies of an air cooler under frost condition Cheng, Yeong Chang Lai Chi Keung, Alvin School of Mechanical and Aerospace Engineering Tso Chih Ping DRNTU::Engineering::Mechanical engineering Frost accumulation on an air cooler, a direct result of combined heat and mass transfer between the moist air flowing across a cold surface, causes heat transfer performance degradation due to the insulating effect of frost layer and the coil blockage as the frost grows. The complex geometry of finned tube air cooler leads to uneven wall and air temperature distribution inside the coil, and causes variations of frost growth rate and densification along the coil. In this study, a general distributed model with frost formation was developed to predict the dynamic behavior of an air cooler both under non-frost and frost condition. Results include frost accumulation and its effect on energy transfer, air off-coil temperature, refrigerant liquid dry-out position and propagation of frost formation along the coil. DOCTOR OF PHILOSOPHY (MPE) 2008-09-17T11:17:55Z 2008-09-17T11:17:55Z 2006 2006 Thesis Cheng, Y. C. (2006). Studies of an air cooler under frost condition. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/6557 10.32657/10356/6557 Nanyang Technological University application/pdf |
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DRNTU::Engineering::Mechanical engineering Cheng, Yeong Chang Studies of an air cooler under frost condition |
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Frost accumulation on an air cooler, a direct result of combined heat and mass transfer between the moist air flowing across a cold surface, causes heat transfer performance degradation due to the insulating effect of frost layer and the coil blockage as the frost grows. The complex geometry of finned tube air cooler leads to uneven wall and air temperature distribution inside the coil, and causes variations of frost growth rate and densification along the coil. In this study, a general distributed model with frost formation was developed to predict the dynamic behavior of an air cooler both under non-frost and frost condition. Results include frost accumulation and its effect on energy transfer, air off-coil temperature, refrigerant liquid dry-out position and propagation of frost formation along the coil. |
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Lai Chi Keung, Alvin |
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Lai Chi Keung, Alvin Cheng, Yeong Chang |
format |
Theses and Dissertations |
author |
Cheng, Yeong Chang |
author_sort |
Cheng, Yeong Chang |
title |
Studies of an air cooler under frost condition |
title_short |
Studies of an air cooler under frost condition |
title_full |
Studies of an air cooler under frost condition |
title_fullStr |
Studies of an air cooler under frost condition |
title_full_unstemmed |
Studies of an air cooler under frost condition |
title_sort |
studies of an air cooler under frost condition |
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2008 |
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https://hdl.handle.net/10356/6557 |
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1761781630794465280 |