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A general optimized geometry of angled ribs for enhancing the thermo-hydraulic behavior of a solar air heater channel e A Taguchi approach

Author:
علیرضا زمانی اقایی
,
اصغر برادران رحیمی
,
علیرضا اکبرزاده توتونچی
,
Alireza Zamani Aghaie
,
Asgar Bradaran Rahimi
,
Alireza Akbarzadeh Tootoonchi
Year
: 2015
Abstract: The thermo-hydraulic behavior of the air flow through a solar air heater is numerically simulated and then optimized by use of Taguchi method. An innovative general geometry is introduced for the rib that variation in its parameters can generate triangular, trapezoidal and rectangular geometries simultaneously. A L16 (44) orthogonal array is used to optimize the geometry factors accounts for the maximum thermal performance of the ribbed channel. Thermal performance concept includes maximization of heat transfer coefficient and minimization of friction factor. Maximization of thermal enhancement factor is taken as the criteria of optimization. At a constant flow Reynolds number of 10000, rib relative pitch (P/H), rib relative height (e/H), rib relative tip width (a/H) and rib front projection (s) are employed as the design factors. Results show that rib pitch, rib height, rib tip width and rib front projection have the greatest influences on the thermo-hydraulic performance, respectively. A triangular rib geometry with rib height of 0.2H and P=2H in which the rib front is normal to the flow direction (i.e. s=0) is recognized as the optimum configuration.
URI: http://libsearch.um.ac.ir:80/fum/handle/fum/3353401
Keyword(s): Angled-ribbed channel,heat transfer,friction factor,thermal performance optimization,Taguchi method
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    A general optimized geometry of angled ribs for enhancing the thermo-hydraulic behavior of a solar air heater channel e A Taguchi approach

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contributor authorعلیرضا زمانی اقاییen
contributor authorاصغر برادران رحیمیen
contributor authorعلیرضا اکبرزاده توتونچیen
contributor authorAlireza Zamani Aghaiefa
contributor authorAsgar Bradaran Rahimifa
contributor authorAlireza Akbarzadeh Tootoonchifa
date accessioned2020-06-06T13:24:09Z
date available2020-06-06T13:24:09Z
date issued2015
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3353401?locale-attribute=en
description abstractThe thermo-hydraulic behavior of the air flow through a solar air heater is numerically simulated and then optimized by use of Taguchi method. An innovative general geometry is introduced for the rib that variation in its parameters can generate triangular, trapezoidal and rectangular geometries simultaneously. A L16 (44) orthogonal array is used to optimize the geometry factors accounts for the maximum thermal performance of the ribbed channel. Thermal performance concept includes maximization of heat transfer coefficient and minimization of friction factor. Maximization of thermal enhancement factor is taken as the criteria of optimization. At a constant flow Reynolds number of 10000, rib relative pitch (P/H), rib relative height (e/H), rib relative tip width (a/H) and rib front projection (s) are employed as the design factors. Results show that rib pitch, rib height, rib tip width and rib front projection have the greatest influences on the thermo-hydraulic performance, respectively. A triangular rib geometry with rib height of 0.2H and P=2H in which the rib front is normal to the flow direction (i.e. s=0) is recognized as the optimum configuration.en
languageEnglish
titleA general optimized geometry of angled ribs for enhancing the thermo-hydraulic behavior of a solar air heater channel e A Taguchi approachen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsAngled-ribbed channelen
subject keywordsheat transferen
subject keywordsfriction factoren
subject keywordsthermal performance optimizationen
subject keywordsTaguchi methoden
journal titleRenewable Energyfa
pages47-54
journal volume83
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1047948.html
identifier articleid1047948
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