Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology

Jet impingement mechanism has been extensively studied in previous research due to its ability to enhance the efficiency of a solar collector. The photovoltaic module temperature can be effectively lowered while preserving the temperature uniformity and enhancing the solar collector performance. Sin...

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Main Authors: Muhammad Amir Aziat Bin Ishak, Adnan Ibrahim, Kamaruzzaman Sopian, Mohd Faizal Fauzan, Muhammad Aqil Afham Rahmat, Ag Sufiyan Abd Hamid
Format: Article
Language:English
English
Published: ResearchGate 2023
Subjects:
Online Access:https://eprints.ums.edu.my/id/eprint/37550/1/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/37550/2/FULL%20TEXT.pdf
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author Muhammad Amir Aziat Bin Ishak
Adnan Ibrahim
Kamaruzzaman Sopian
Mohd Faizal Fauzan
Muhammad Aqil Afham Rahmat
Ag Sufiyan Abd Hamid
author_facet Muhammad Amir Aziat Bin Ishak
Adnan Ibrahim
Kamaruzzaman Sopian
Mohd Faizal Fauzan
Muhammad Aqil Afham Rahmat
Ag Sufiyan Abd Hamid
author_sort Muhammad Amir Aziat Bin Ishak
collection UMS
description Jet impingement mechanism has been extensively studied in previous research due to its ability to enhance the efficiency of a solar collector. The photovoltaic module temperature can be effectively lowered while preserving the temperature uniformity and enhancing the solar collector performance. Since jet impingement offers such a broad application, numerous studies have focused on its heat transfer characteristic. This article provides a comprehensive review of recent jet impingement solar collectors. Additionally, the design and performance of the jet impingement cooling methods on solar air collectors, photovoltaic and photovoltaic thermal systems are discussed. The comprehensive review is classified into four main components involving jet impingement in solar collector applications: single pass, double pass, concentrated and jet configuration. A critical review is discussed at the end of each classification. The nozzle streamwise and spanwise pitch, nozzle to target spacing, nozzle diameter, nozzle shape, and Reynold number significantly impact the heat transfer properties of jet impingement. Research on applying single pass-single ducts using jet impingement is still lacking and needs further research. Thermally, a double passsolar collector outperforms a single pass-solar collector due to the absorber plate's high heat extraction rate and more significant interaction caused by the doubled heat transfer surface.
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spelling ums.eprints-375502023-10-31T02:57:25Z https://eprints.ums.edu.my/id/eprint/37550/ Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology Muhammad Amir Aziat Bin Ishak Adnan Ibrahim Kamaruzzaman Sopian Mohd Faizal Fauzan Muhammad Aqil Afham Rahmat Ag Sufiyan Abd Hamid TA1-2040 Engineering (General). Civil engineering (General) TJ807-830 Renewable energy sources Jet impingement mechanism has been extensively studied in previous research due to its ability to enhance the efficiency of a solar collector. The photovoltaic module temperature can be effectively lowered while preserving the temperature uniformity and enhancing the solar collector performance. Since jet impingement offers such a broad application, numerous studies have focused on its heat transfer characteristic. This article provides a comprehensive review of recent jet impingement solar collectors. Additionally, the design and performance of the jet impingement cooling methods on solar air collectors, photovoltaic and photovoltaic thermal systems are discussed. The comprehensive review is classified into four main components involving jet impingement in solar collector applications: single pass, double pass, concentrated and jet configuration. A critical review is discussed at the end of each classification. The nozzle streamwise and spanwise pitch, nozzle to target spacing, nozzle diameter, nozzle shape, and Reynold number significantly impact the heat transfer properties of jet impingement. Research on applying single pass-single ducts using jet impingement is still lacking and needs further research. Thermally, a double passsolar collector outperforms a single pass-solar collector due to the absorber plate's high heat extraction rate and more significant interaction caused by the doubled heat transfer surface. ResearchGate 2023 Article NonPeerReviewed text en https://eprints.ums.edu.my/id/eprint/37550/1/ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/37550/2/FULL%20TEXT.pdf Muhammad Amir Aziat Bin Ishak and Adnan Ibrahim and Kamaruzzaman Sopian and Mohd Faizal Fauzan and Muhammad Aqil Afham Rahmat and Ag Sufiyan Abd Hamid (2023) Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology. International journal of renewable energy research, 13 (2). pp. 1-17. https://doi.org/10.20508/ijrer.v13i2
spellingShingle TA1-2040 Engineering (General). Civil engineering (General)
TJ807-830 Renewable energy sources
Muhammad Amir Aziat Bin Ishak
Adnan Ibrahim
Kamaruzzaman Sopian
Mohd Faizal Fauzan
Muhammad Aqil Afham Rahmat
Ag Sufiyan Abd Hamid
Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology
title Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology
title_full Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology
title_fullStr Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology
title_full_unstemmed Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology
title_short Classification of Jet Impingement Solar Collectors – A Recent Development in Solar Energy Technology
title_sort classification of jet impingement solar collectors a recent development in solar energy technology
topic TA1-2040 Engineering (General). Civil engineering (General)
TJ807-830 Renewable energy sources
url https://eprints.ums.edu.my/id/eprint/37550/1/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/37550/2/FULL%20TEXT.pdf
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