Analysis of unsteady heat transfer of specific longitudinal fins with Temperature-dependent thermal coefficients by DTM

Nowadays, with the development of heat transfer in various industrial fields, like as electrical and mechanical fields, we see the more effect of fins in this improvement. The computational price is hidden term of optimizing that can be included of CPU time and material optimizing can be included to...

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Main Authors: A.V. Pasha, P. Jalili, D.D. Ganji
Format: Article
Language:English
Published: Elsevier 2018-12-01
Series:Alexandria Engineering Journal
Online Access:http://www.sciencedirect.com/science/article/pii/S1110016818301479
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author A.V. Pasha
P. Jalili
D.D. Ganji
author_facet A.V. Pasha
P. Jalili
D.D. Ganji
author_sort A.V. Pasha
collection DOAJ
description Nowadays, with the development of heat transfer in various industrial fields, like as electrical and mechanical fields, we see the more effect of fins in this improvement. The computational price is hidden term of optimizing that can be included of CPU time and material optimizing can be included to modify the profile of fins. So in this paper have been investigated the heat transfer of fins with different profile (Convex, Concave, Triangular, Rectangular) in unsteady condition. The differential transform method (DTM) has been employed to solve this problem due in addition investigation of differences of temperature in fins, computational space become lesser. The boundary conditions are insulated tip with limited length and the thermal functions have been assumed for coefficient of heat transfer and conductivity. Then has been investigated the effect of relationship parameters like as (ε,β,θ,M). In unsteady condition these parameters are limited to one number that is useful in making optimum number. When β are increasing the temperate plot going in the upper level that show the efficiency going upper. In unsteady condition this parameter is limited to one number that it is very important for optimization by to build fins. Keywords: Rectangular fin, Convex fin, Concave fin, Triangular fin, DTM, Temperature-dependent thermal conductivity
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spelling doaj.art-2312fb1851674927933584a73fbe12182022-12-21T20:05:01ZengElsevierAlexandria Engineering Journal1110-01682018-12-0157435093521Analysis of unsteady heat transfer of specific longitudinal fins with Temperature-dependent thermal coefficients by DTMA.V. Pasha0P. Jalili1D.D. Ganji2Department of Mechanical Engineering, Sari Branch, Islamic Azad University, Sari, IranYoung Researchers and Elites Club, North Tehran Branch, Islamic Azad University, Tehran, IranDepartment of Mechanical Engineering, Babol Noshirvani University of Technology, Babol, Iran; Corresponding author.Nowadays, with the development of heat transfer in various industrial fields, like as electrical and mechanical fields, we see the more effect of fins in this improvement. The computational price is hidden term of optimizing that can be included of CPU time and material optimizing can be included to modify the profile of fins. So in this paper have been investigated the heat transfer of fins with different profile (Convex, Concave, Triangular, Rectangular) in unsteady condition. The differential transform method (DTM) has been employed to solve this problem due in addition investigation of differences of temperature in fins, computational space become lesser. The boundary conditions are insulated tip with limited length and the thermal functions have been assumed for coefficient of heat transfer and conductivity. Then has been investigated the effect of relationship parameters like as (ε,β,θ,M). In unsteady condition these parameters are limited to one number that is useful in making optimum number. When β are increasing the temperate plot going in the upper level that show the efficiency going upper. In unsteady condition this parameter is limited to one number that it is very important for optimization by to build fins. Keywords: Rectangular fin, Convex fin, Concave fin, Triangular fin, DTM, Temperature-dependent thermal conductivityhttp://www.sciencedirect.com/science/article/pii/S1110016818301479
spellingShingle A.V. Pasha
P. Jalili
D.D. Ganji
Analysis of unsteady heat transfer of specific longitudinal fins with Temperature-dependent thermal coefficients by DTM
Alexandria Engineering Journal
title Analysis of unsteady heat transfer of specific longitudinal fins with Temperature-dependent thermal coefficients by DTM
title_full Analysis of unsteady heat transfer of specific longitudinal fins with Temperature-dependent thermal coefficients by DTM
title_fullStr Analysis of unsteady heat transfer of specific longitudinal fins with Temperature-dependent thermal coefficients by DTM
title_full_unstemmed Analysis of unsteady heat transfer of specific longitudinal fins with Temperature-dependent thermal coefficients by DTM
title_short Analysis of unsteady heat transfer of specific longitudinal fins with Temperature-dependent thermal coefficients by DTM
title_sort analysis of unsteady heat transfer of specific longitudinal fins with temperature dependent thermal coefficients by dtm
url http://www.sciencedirect.com/science/article/pii/S1110016818301479
work_keys_str_mv AT avpasha analysisofunsteadyheattransferofspecificlongitudinalfinswithtemperaturedependentthermalcoefficientsbydtm
AT pjalili analysisofunsteadyheattransferofspecificlongitudinalfinswithtemperaturedependentthermalcoefficientsbydtm
AT ddganji analysisofunsteadyheattransferofspecificlongitudinalfinswithtemperaturedependentthermalcoefficientsbydtm