Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection

In many engineering applications extended surfaces known as fins, are used to enhance convective heat transfer. The problem of natural convection heat transfer for perforated fins was investigated in this work. An experimental study was conducted to investigate the natural convection heat transfer...

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Main Authors: Ibrahim, Thamir K., F., Basrawi, Marwah Noori, Mohammed, Hassan, Ibrahim
Format: Article
Published: Asian Research Publishing Network (ARPN) 2016
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Online Access:http://umpir.ump.edu.my/id/eprint/15256/
http://www.arpnjournals.org/jeas/research_papers/rp_2016/jeas_0516_4282.pdf
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spelling my.ump.umpir.152562018-09-28T07:41:35Z http://umpir.ump.edu.my/id/eprint/15256/ Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection Ibrahim, Thamir K. F., Basrawi Marwah Noori, Mohammed Hassan, Ibrahim TJ Mechanical engineering and machinery In many engineering applications extended surfaces known as fins, are used to enhance convective heat transfer. The problem of natural convection heat transfer for perforated fins was investigated in this work. An experimental study was conducted to investigate the natural convection heat transfer in a fin plate with circular perforations. The investigation is conducted to compare heat transfer rate of rectangular fins (15 fins) with a size of 100x270 mm embedded with circular vertical shaft. The patterns of perforations rectangular fins contain of 18 circular hole. The temperature distribution was examined for an array of rectangular fins. Experimental results show that the temperatures distribution along the nonperforated fin decreased from 49 to 42oC but for the perforated fin with hole diameter of 20mm, temperature decreased from 67 to 47.4oC with low power (200W). The temperature drop along the non-perforated fin decreased from 170 to 122oC but the temperature drop for perforated fin with hole diameter 20mm decreased from 170 to 101.7o C with high power (900W). Also, when the perforation diameter increased the decrement of the temperature between the base and tip of the fin was increases. Furthermore, when the perforation diameter increased, the heat transfer rate and the coefficient of heat transfer also increased Asian Research Publishing Network (ARPN) 2016 Article PeerReviewed Ibrahim, Thamir K. and F., Basrawi and Marwah Noori, Mohammed and Hassan, Ibrahim (2016) Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection. ARPN Journal of Engineering and Applied Sciences, 11 (10). pp. 6371-6375. ISSN 1819-6608 http://www.arpnjournals.org/jeas/research_papers/rp_2016/jeas_0516_4282.pdf
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Ibrahim, Thamir K.
F., Basrawi
Marwah Noori, Mohammed
Hassan, Ibrahim
Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection
description In many engineering applications extended surfaces known as fins, are used to enhance convective heat transfer. The problem of natural convection heat transfer for perforated fins was investigated in this work. An experimental study was conducted to investigate the natural convection heat transfer in a fin plate with circular perforations. The investigation is conducted to compare heat transfer rate of rectangular fins (15 fins) with a size of 100x270 mm embedded with circular vertical shaft. The patterns of perforations rectangular fins contain of 18 circular hole. The temperature distribution was examined for an array of rectangular fins. Experimental results show that the temperatures distribution along the nonperforated fin decreased from 49 to 42oC but for the perforated fin with hole diameter of 20mm, temperature decreased from 67 to 47.4oC with low power (200W). The temperature drop along the non-perforated fin decreased from 170 to 122oC but the temperature drop for perforated fin with hole diameter 20mm decreased from 170 to 101.7o C with high power (900W). Also, when the perforation diameter increased the decrement of the temperature between the base and tip of the fin was increases. Furthermore, when the perforation diameter increased, the heat transfer rate and the coefficient of heat transfer also increased
format Article
author Ibrahim, Thamir K.
F., Basrawi
Marwah Noori, Mohammed
Hassan, Ibrahim
author_facet Ibrahim, Thamir K.
F., Basrawi
Marwah Noori, Mohammed
Hassan, Ibrahim
author_sort Ibrahim, Thamir K.
title Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection
title_short Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection
title_full Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection
title_fullStr Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection
title_full_unstemmed Effect Of Perforation Area On Temperature Distribution Of The Rectangular Fins Under Natural Convection
title_sort effect of perforation area on temperature distribution of the rectangular fins under natural convection
publisher Asian Research Publishing Network (ARPN)
publishDate 2016
url http://umpir.ump.edu.my/id/eprint/15256/
http://www.arpnjournals.org/jeas/research_papers/rp_2016/jeas_0516_4282.pdf
_version_ 1643667624223047680
score 13.18916