Numerical investigation of heat transfer from multi-bulges pins

This paper presents an attempt to improve the thermal performance of the absorber plate in photovoltaic solar systems by introducing novel configurations of pin fins. The cross-sectional area of these pins varies along the pin length producing small bulges with regular geometric shapes. The objectiv...

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Main Author: Amr Owes Elsayed
Format: Article
Language:English
Published: Elsevier 2018-09-01
Series:Case Studies in Thermal Engineering
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X18300662
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spelling doaj-8b4ad2304d3b4df79802b869cfaef5642020-11-24T21:13:40ZengElsevierCase Studies in Thermal Engineering2214-157X2018-09-0112636643Numerical investigation of heat transfer from multi-bulges pinsAmr Owes Elsayed0Department of Mechanical Power Engineering, Faculty of Engineering, Zagazig University, EgyptThis paper presents an attempt to improve the thermal performance of the absorber plate in photovoltaic solar systems by introducing novel configurations of pin fins. The cross-sectional area of these pins varies along the pin length producing small bulges with regular geometric shapes. The objective of changing the pin profile is to increase the heat transfer area and to produce a better mixing effect in the passages of the cooling fluid. Three shapes of bulges (diamond, cylinder and circular rings) have been employed to produce three forms of multi-bulges pin. The novel pins have been investigated under the influence of steady laminar forced convection flow. The effect of fin design on the absorber heat dissipation behavior has been studied and reported. The numerical model has been carried out by using CFD Fluent software. Finite volume technique is used and SIMPLE algorithm is applied. The thermal performance is presented in terms of surface temperatures of fin and plate, thermal efficiency of the absorber and average Nusselt number. In comparison with conventional pin fins, the results showed that the proposed pin fins indicate a good insight in the heat dissipation process and more effective in thermal performance. Keywords: Photovoltaic thermal collectors, Pin fins, Bulges pins, Absorber thermal efficiencyhttp://www.sciencedirect.com/science/article/pii/S2214157X18300662
collection DOAJ
language English
format Article
sources DOAJ
author Amr Owes Elsayed
spellingShingle Amr Owes Elsayed
Numerical investigation of heat transfer from multi-bulges pins
Case Studies in Thermal Engineering
author_facet Amr Owes Elsayed
author_sort Amr Owes Elsayed
title Numerical investigation of heat transfer from multi-bulges pins
title_short Numerical investigation of heat transfer from multi-bulges pins
title_full Numerical investigation of heat transfer from multi-bulges pins
title_fullStr Numerical investigation of heat transfer from multi-bulges pins
title_full_unstemmed Numerical investigation of heat transfer from multi-bulges pins
title_sort numerical investigation of heat transfer from multi-bulges pins
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2018-09-01
description This paper presents an attempt to improve the thermal performance of the absorber plate in photovoltaic solar systems by introducing novel configurations of pin fins. The cross-sectional area of these pins varies along the pin length producing small bulges with regular geometric shapes. The objective of changing the pin profile is to increase the heat transfer area and to produce a better mixing effect in the passages of the cooling fluid. Three shapes of bulges (diamond, cylinder and circular rings) have been employed to produce three forms of multi-bulges pin. The novel pins have been investigated under the influence of steady laminar forced convection flow. The effect of fin design on the absorber heat dissipation behavior has been studied and reported. The numerical model has been carried out by using CFD Fluent software. Finite volume technique is used and SIMPLE algorithm is applied. The thermal performance is presented in terms of surface temperatures of fin and plate, thermal efficiency of the absorber and average Nusselt number. In comparison with conventional pin fins, the results showed that the proposed pin fins indicate a good insight in the heat dissipation process and more effective in thermal performance. Keywords: Photovoltaic thermal collectors, Pin fins, Bulges pins, Absorber thermal efficiency
url http://www.sciencedirect.com/science/article/pii/S2214157X18300662
work_keys_str_mv AT amroweselsayed numericalinvestigationofheattransferfrommultibulgespins
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