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Indoor Solar Thermal Energy Saving Time with Phase Change Material in a Horizontal Shell and Finned-Tube Heat Exchanger

An experimental as well as numerical investigation was conducted on the melting/solidification processes of a stationary phase change material (PCM) in a shell around a finned-tube heat exchanger system. The PCM was stored in the horizontal annular space between a shell and finned-tube where distill...

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Autores principales: Paria, S., Sarhan, A. A. D., Goodarzi, M. S., Baradaran, S., Rahmanian, B., Yarmand, H., Alavi, M. A., Kazi, S. N., Metselaar, H. S. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4386704/
https://www.ncbi.nlm.nih.gov/pubmed/25879052
http://dx.doi.org/10.1155/2015/291657
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author Paria, S.
Sarhan, A. A. D.
Goodarzi, M. S.
Baradaran, S.
Rahmanian, B.
Yarmand, H.
Alavi, M. A.
Kazi, S. N.
Metselaar, H. S. C.
author_facet Paria, S.
Sarhan, A. A. D.
Goodarzi, M. S.
Baradaran, S.
Rahmanian, B.
Yarmand, H.
Alavi, M. A.
Kazi, S. N.
Metselaar, H. S. C.
author_sort Paria, S.
collection PubMed
description An experimental as well as numerical investigation was conducted on the melting/solidification processes of a stationary phase change material (PCM) in a shell around a finned-tube heat exchanger system. The PCM was stored in the horizontal annular space between a shell and finned-tube where distilled water was employed as the heat transfer fluid (HTF). The focus of this study was on the behavior of PCM for storage (charging or melting) and removal (discharging or solidification), as well as the effect of flow rate on the charged and discharged solar thermal energy. The impact of the Reynolds number was determined and the results were compared with each other to reveal the changes in amount of stored thermal energy with the variation of heat transfer fluid flow rates. The results showed that, by increasing the Reynolds number from 1000 to 2000, the total melting time decreases by 58%. The process of solidification also will speed up with increasing Reynolds number in the discharging process. The results also indicated that the fluctuation of gradient temperature decreased and became smooth with increasing Reynolds number. As a result, by increasing the Reynolds number in the charging process, the theoretical efficiency rises.
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spelling pubmed-43867042015-04-15 Indoor Solar Thermal Energy Saving Time with Phase Change Material in a Horizontal Shell and Finned-Tube Heat Exchanger Paria, S. Sarhan, A. A. D. Goodarzi, M. S. Baradaran, S. Rahmanian, B. Yarmand, H. Alavi, M. A. Kazi, S. N. Metselaar, H. S. C. ScientificWorldJournal Research Article An experimental as well as numerical investigation was conducted on the melting/solidification processes of a stationary phase change material (PCM) in a shell around a finned-tube heat exchanger system. The PCM was stored in the horizontal annular space between a shell and finned-tube where distilled water was employed as the heat transfer fluid (HTF). The focus of this study was on the behavior of PCM for storage (charging or melting) and removal (discharging or solidification), as well as the effect of flow rate on the charged and discharged solar thermal energy. The impact of the Reynolds number was determined and the results were compared with each other to reveal the changes in amount of stored thermal energy with the variation of heat transfer fluid flow rates. The results showed that, by increasing the Reynolds number from 1000 to 2000, the total melting time decreases by 58%. The process of solidification also will speed up with increasing Reynolds number in the discharging process. The results also indicated that the fluctuation of gradient temperature decreased and became smooth with increasing Reynolds number. As a result, by increasing the Reynolds number in the charging process, the theoretical efficiency rises. Hindawi Publishing Corporation 2015 2015-03-23 /pmc/articles/PMC4386704/ /pubmed/25879052 http://dx.doi.org/10.1155/2015/291657 Text en Copyright © 2015 S. Paria et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Paria, S.
Sarhan, A. A. D.
Goodarzi, M. S.
Baradaran, S.
Rahmanian, B.
Yarmand, H.
Alavi, M. A.
Kazi, S. N.
Metselaar, H. S. C.
Indoor Solar Thermal Energy Saving Time with Phase Change Material in a Horizontal Shell and Finned-Tube Heat Exchanger
title Indoor Solar Thermal Energy Saving Time with Phase Change Material in a Horizontal Shell and Finned-Tube Heat Exchanger
title_full Indoor Solar Thermal Energy Saving Time with Phase Change Material in a Horizontal Shell and Finned-Tube Heat Exchanger
title_fullStr Indoor Solar Thermal Energy Saving Time with Phase Change Material in a Horizontal Shell and Finned-Tube Heat Exchanger
title_full_unstemmed Indoor Solar Thermal Energy Saving Time with Phase Change Material in a Horizontal Shell and Finned-Tube Heat Exchanger
title_short Indoor Solar Thermal Energy Saving Time with Phase Change Material in a Horizontal Shell and Finned-Tube Heat Exchanger
title_sort indoor solar thermal energy saving time with phase change material in a horizontal shell and finned-tube heat exchanger
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4386704/
https://www.ncbi.nlm.nih.gov/pubmed/25879052
http://dx.doi.org/10.1155/2015/291657
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