Thermally Developing Forced Convection in a Horizontal Equilateral Triangular Channel

An experimental investigation was carried out to study thermally developing fully developed laminar forced convection in a horizontal equilateral triangular channel where the channel surface was heated uniformly. The channel length was (1.5 m) long and constructed from three plane (100 mm) walls to...

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Main Author: Manar Mahdi
Format: Article
Language:English
Published: Tikrit University 2015-02-01
Series:Tikrit Journal of Engineering Sciences
Online Access:http://www.tj-es.com/ojs/index.php/tjes/article/view/68
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author Manar Mahdi
author_facet Manar Mahdi
author_sort Manar Mahdi
collection DOAJ
description An experimental investigation was carried out to study thermally developing fully developed laminar forced convection in a horizontal equilateral triangular channel where the channel surface was heated uniformly. The channel length was (1.5 m) long and constructed from three plane (100 mm) walls to form the equilateral triangular cross section. The experiments were conducted for three mass flow rates (1.91×10<sup>-3</sup>, 2.54×10<sup>-3</sup> and 3.03×10<sup>-3</sup> kg/s) and four heat fluxes (91, 171, 272 and 406 W/m<sup>2</sup>). Reynolds number range was (1198 Re 1988). It was found that local Nusselt number increasing as the heat fluxes and the mass flow rate increased. Also it was found that the greatest local Nusselt number value was in the beginning of the channel then it decreased accompanied by growing the thermal boundary layer along the channel. Present experimental results have a good agreement with previous results obtained for similarly configured channels.
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spelling doaj.art-945e1eca00bb4eac9f77c85d017930af2023-09-02T20:42:30ZengTikrit UniversityTikrit Journal of Engineering Sciences1813-162X2312-75892015-02-01193586737Thermally Developing Forced Convection in a Horizontal Equilateral Triangular ChannelManar MahdiAn experimental investigation was carried out to study thermally developing fully developed laminar forced convection in a horizontal equilateral triangular channel where the channel surface was heated uniformly. The channel length was (1.5 m) long and constructed from three plane (100 mm) walls to form the equilateral triangular cross section. The experiments were conducted for three mass flow rates (1.91×10<sup>-3</sup>, 2.54×10<sup>-3</sup> and 3.03×10<sup>-3</sup> kg/s) and four heat fluxes (91, 171, 272 and 406 W/m<sup>2</sup>). Reynolds number range was (1198 Re 1988). It was found that local Nusselt number increasing as the heat fluxes and the mass flow rate increased. Also it was found that the greatest local Nusselt number value was in the beginning of the channel then it decreased accompanied by growing the thermal boundary layer along the channel. Present experimental results have a good agreement with previous results obtained for similarly configured channels.http://www.tj-es.com/ojs/index.php/tjes/article/view/68
spellingShingle Manar Mahdi
Thermally Developing Forced Convection in a Horizontal Equilateral Triangular Channel
Tikrit Journal of Engineering Sciences
title Thermally Developing Forced Convection in a Horizontal Equilateral Triangular Channel
title_full Thermally Developing Forced Convection in a Horizontal Equilateral Triangular Channel
title_fullStr Thermally Developing Forced Convection in a Horizontal Equilateral Triangular Channel
title_full_unstemmed Thermally Developing Forced Convection in a Horizontal Equilateral Triangular Channel
title_short Thermally Developing Forced Convection in a Horizontal Equilateral Triangular Channel
title_sort thermally developing forced convection in a horizontal equilateral triangular channel
url http://www.tj-es.com/ojs/index.php/tjes/article/view/68
work_keys_str_mv AT manarmahdi thermallydevelopingforcedconvectioninahorizontalequilateraltriangularchannel