Solar Photovoltaic Thermal Cells Performance Improvement using Jet, Phase Change Material and Nanoparticles Cooling Technology: A review

The cooling of solar photovoltaic (PV) cells is reviewed in this study. The critical analysis aims to increase PV cell life span and electrical efficiency. To improve the caliber of future studies, this paper examines the implications of earlier studies as well as technical specifics for optimizatio...

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Main Authors: Mays Shaeli, Monier Baccar, Jalal Jalil
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2024-01-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_180413_21666f609ce145abcbf702b8123e6342.pdf
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author Mays Shaeli
Monier Baccar
Jalal Jalil
author_facet Mays Shaeli
Monier Baccar
Jalal Jalil
author_sort Mays Shaeli
collection DOAJ
description The cooling of solar photovoltaic (PV) cells is reviewed in this study. The critical analysis aims to increase PV cell life span and electrical efficiency. To improve the caliber of future studies, this paper examines the implications of earlier studies as well as technical specifics for optimization. Additionally, some of the benefits and drawbacks of various cooling methods are explored. The PV cells cool rate and the PV system's jet impingement cooling technology in PV systems are more effective than any conventional PV cooling systems. Phase change material (PCM) is one of the effective methods used to cool PV cells, as it supporting PV cell cooling in both hot and cold environmental circumstances is beneficial. PCM is appropriate for the cooling application of PV cells due to the requirement of local temperature variation. Many researches and experiences on a different ways of cooling PV collector had been studied to analyze the behavior of PVT systems. Jet and Nanoparticles with PCM are the main ways of cooling and will be discussed in this paper. Lastly, future recommendations based on identified research gaps were suggested. In future work, it is recommended to use jet impingement cooling with PCM together for the PVT system. The proposed system integrates two types of the cooling system with a PV system, the advantage of using jet impingement cooling can result in low average cell temperature for PV cells, and PCM as storage energy with Nanoparticles to enhance the thermal conductive of PCM.
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spelling doaj.art-8c079c2aa3b44dba8d797a0821aede222024-02-04T18:01:22ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582024-01-01421516410.30684/etj.2023.137599.1379180413Solar Photovoltaic Thermal Cells Performance Improvement using Jet, Phase Change Material and Nanoparticles Cooling Technology: A reviewMays Shaeli0Monier Baccar1Jalal Jalil2Mechanical Engineering Dept., Ecole National Ingenious, Route Soukra Km 3.5 B.P 1173-3038 Sfax, Tunis.Mechanical Engineering Dept., Ecole National Ingenious, Route Soukra Km 3.5 B.P 1173-3038 Sfax, Tunis.Electromechanical Engineering Dept., University of Technology-Iraq, Alsina’a street, 10066 Baghdad, Iraq.The cooling of solar photovoltaic (PV) cells is reviewed in this study. The critical analysis aims to increase PV cell life span and electrical efficiency. To improve the caliber of future studies, this paper examines the implications of earlier studies as well as technical specifics for optimization. Additionally, some of the benefits and drawbacks of various cooling methods are explored. The PV cells cool rate and the PV system's jet impingement cooling technology in PV systems are more effective than any conventional PV cooling systems. Phase change material (PCM) is one of the effective methods used to cool PV cells, as it supporting PV cell cooling in both hot and cold environmental circumstances is beneficial. PCM is appropriate for the cooling application of PV cells due to the requirement of local temperature variation. Many researches and experiences on a different ways of cooling PV collector had been studied to analyze the behavior of PVT systems. Jet and Nanoparticles with PCM are the main ways of cooling and will be discussed in this paper. Lastly, future recommendations based on identified research gaps were suggested. In future work, it is recommended to use jet impingement cooling with PCM together for the PVT system. The proposed system integrates two types of the cooling system with a PV system, the advantage of using jet impingement cooling can result in low average cell temperature for PV cells, and PCM as storage energy with Nanoparticles to enhance the thermal conductive of PCM.https://etj.uotechnology.edu.iq/article_180413_21666f609ce145abcbf702b8123e6342.pdfphotovoltaicnanoparticlespcmjet impingementthermal
spellingShingle Mays Shaeli
Monier Baccar
Jalal Jalil
Solar Photovoltaic Thermal Cells Performance Improvement using Jet, Phase Change Material and Nanoparticles Cooling Technology: A review
Engineering and Technology Journal
photovoltaic
nanoparticles
pcm
jet impingement
thermal
title Solar Photovoltaic Thermal Cells Performance Improvement using Jet, Phase Change Material and Nanoparticles Cooling Technology: A review
title_full Solar Photovoltaic Thermal Cells Performance Improvement using Jet, Phase Change Material and Nanoparticles Cooling Technology: A review
title_fullStr Solar Photovoltaic Thermal Cells Performance Improvement using Jet, Phase Change Material and Nanoparticles Cooling Technology: A review
title_full_unstemmed Solar Photovoltaic Thermal Cells Performance Improvement using Jet, Phase Change Material and Nanoparticles Cooling Technology: A review
title_short Solar Photovoltaic Thermal Cells Performance Improvement using Jet, Phase Change Material and Nanoparticles Cooling Technology: A review
title_sort solar photovoltaic thermal cells performance improvement using jet phase change material and nanoparticles cooling technology a review
topic photovoltaic
nanoparticles
pcm
jet impingement
thermal
url https://etj.uotechnology.edu.iq/article_180413_21666f609ce145abcbf702b8123e6342.pdf
work_keys_str_mv AT maysshaeli solarphotovoltaicthermalcellsperformanceimprovementusingjetphasechangematerialandnanoparticlescoolingtechnologyareview
AT monierbaccar solarphotovoltaicthermalcellsperformanceimprovementusingjetphasechangematerialandnanoparticlescoolingtechnologyareview
AT jalaljalil solarphotovoltaicthermalcellsperformanceimprovementusingjetphasechangematerialandnanoparticlescoolingtechnologyareview