Effect of coolant plate geometry and material in a freshwater production system: an experimental study
Channeled coolant plates have been playing an important role in the field of various heat transfer applications. Due to the “fin effect”, the overall heat transfer area increases and thus the amount of energy transfer enhances. In this study, effect of a specially designed coolant plate has been u...
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iium-462192016-05-20T07:50:16Z http://irep.iium.edu.my/46219/ Effect of coolant plate geometry and material in a freshwater production system: an experimental study Bahar, Rubina Hawlader, Mohammad Nurul Alam Ariff, Tasnim Firdaus TD201 Water supply for domestic and industrial purposes TJ163.26 Energy conservation Channeled coolant plates have been playing an important role in the field of various heat transfer applications. Due to the “fin effect”, the overall heat transfer area increases and thus the amount of energy transfer enhances. In this study, effect of a specially designed coolant plate has been used to observe its effect on heat transfer during condensation in a freshwater production system. Compared to a flat coolant plate, the freshwater production enhanced maximum up to 50% for a coolant temperature of 25°C with this channeled plate. In addition, the plate material was varied and production enhancement was observed for the higher conductive material. Trans Tech Publications, Switzerland 2015 Article PeerReviewed application/pdf en http://irep.iium.edu.my/46219/1/46219_-_Effect_of_coolant_plate_geometry_and_material_in_a_freshwater_production_system.pdf Bahar, Rubina and Hawlader, Mohammad Nurul Alam and Ariff, Tasnim Firdaus (2015) Effect of coolant plate geometry and material in a freshwater production system: an experimental study. Advanced Materials Research, 1115. pp. 468-471. ISSN 1022-6680 http://www.ttp.net/ 10.4028/www.scientific.net/AMR.1115.468 |
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TD201 Water supply for domestic and industrial purposes TJ163.26 Energy conservation |
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TD201 Water supply for domestic and industrial purposes TJ163.26 Energy conservation Bahar, Rubina Hawlader, Mohammad Nurul Alam Ariff, Tasnim Firdaus Effect of coolant plate geometry and material in a freshwater production system: an experimental study |
description |
Channeled coolant plates have been playing an important role in the field of various heat
transfer applications. Due to the “fin effect”, the overall heat transfer area increases and thus the
amount of energy transfer enhances. In this study, effect of a specially designed coolant plate has been used to observe its effect on heat transfer during condensation in a freshwater production system. Compared to a flat coolant plate, the freshwater production enhanced maximum up to 50% for a coolant temperature of 25°C with this channeled plate. In addition, the plate material was
varied and production enhancement was observed for the higher conductive material. |
format |
Article |
author |
Bahar, Rubina Hawlader, Mohammad Nurul Alam Ariff, Tasnim Firdaus |
author_facet |
Bahar, Rubina Hawlader, Mohammad Nurul Alam Ariff, Tasnim Firdaus |
author_sort |
Bahar, Rubina |
title |
Effect of coolant plate geometry and material in a freshwater production system: an experimental study |
title_short |
Effect of coolant plate geometry and material in a freshwater production system: an experimental study |
title_full |
Effect of coolant plate geometry and material in a freshwater production system: an experimental study |
title_fullStr |
Effect of coolant plate geometry and material in a freshwater production system: an experimental study |
title_full_unstemmed |
Effect of coolant plate geometry and material in a freshwater production system: an experimental study |
title_sort |
effect of coolant plate geometry and material in a freshwater production system: an experimental study |
publisher |
Trans Tech Publications, Switzerland |
publishDate |
2015 |
url |
http://irep.iium.edu.my/46219/ http://irep.iium.edu.my/46219/ http://irep.iium.edu.my/46219/ http://irep.iium.edu.my/46219/1/46219_-_Effect_of_coolant_plate_geometry_and_material_in_a_freshwater_production_system.pdf |
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2023-09-18T21:05:47Z |
last_indexed |
2023-09-18T21:05:47Z |
_version_ |
1777410923863998464 |