Effect of water cooling and dust removal on solar photovoltaic module efficiency

This paper is on the effect of water cooling and debris removal on solar photovoltaic module efficiency. Photovoltaic power generation suffers from low energy conversion efficiency, mainly caused by the photovoltaic module's extraordinarily high operating surface temperatures and dust colle...

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Main Authors: Nik Amran, Nik Muhammad Hazwan, Mohd Hassan, Siti Lailatul, Abdul Halim, Ili Shairah, Sulaiman, Nasri, Abdullah, Noor Ezan, Ab Rahim, A’zraa Afhzan
Format: Article
Language:English
Published: Akademia Baru Publishing 2023
Online Access:http://psasir.upm.edu.my/id/eprint/107548/1/Effect%20of%20water%20cooling%20and%20dust%20removal%20on%20solar%20photovoltaic%20module%20efficiency.pdf
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author Nik Amran, Nik Muhammad Hazwan
Mohd Hassan, Siti Lailatul
Abdul Halim, Ili Shairah
Sulaiman, Nasri
Abdullah, Noor Ezan
Ab Rahim, A’zraa Afhzan
author_facet Nik Amran, Nik Muhammad Hazwan
Mohd Hassan, Siti Lailatul
Abdul Halim, Ili Shairah
Sulaiman, Nasri
Abdullah, Noor Ezan
Ab Rahim, A’zraa Afhzan
author_sort Nik Amran, Nik Muhammad Hazwan
collection UPM
description This paper is on the effect of water cooling and debris removal on solar photovoltaic module efficiency. Photovoltaic power generation suffers from low energy conversion efficiency, mainly caused by the photovoltaic module's extraordinarily high operating surface temperatures and dust collection. This project aims to show how these issues affect module performance and how to overcome them. The first objective is to examine how surface temperature cooling affects photovoltaic modules, and the second objective focuses on the effect of debris deposition on module surfaces. The photovoltaic module was water-cooled using a prototype with a built-in motor and water pump that operated to cool and clean the photovoltaic module. Water-cooled modules are then compared to conventional modules (no modification). For the debris build-up investigation, the traditional module is covered with opaque sheets of varying sizes to simulate dust coating on the module surface. The output power is compared to the module with water cooling (zero dust coverage). According to these findings, it takes the solar module only five weeks to lose 20% of its efficiency once it has been installed. The research found that the module had a low energy conversion efficiency when the surface temperature was relatively high. The increase in surface temperature can be attributed to the production of heat energy on the surface due to the module being exposed to intense sunlight.
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spelling upm.eprints-1075482024-10-17T07:15:15Z http://psasir.upm.edu.my/id/eprint/107548/ Effect of water cooling and dust removal on solar photovoltaic module efficiency Nik Amran, Nik Muhammad Hazwan Mohd Hassan, Siti Lailatul Abdul Halim, Ili Shairah Sulaiman, Nasri Abdullah, Noor Ezan Ab Rahim, A’zraa Afhzan This paper is on the effect of water cooling and debris removal on solar photovoltaic module efficiency. Photovoltaic power generation suffers from low energy conversion efficiency, mainly caused by the photovoltaic module's extraordinarily high operating surface temperatures and dust collection. This project aims to show how these issues affect module performance and how to overcome them. The first objective is to examine how surface temperature cooling affects photovoltaic modules, and the second objective focuses on the effect of debris deposition on module surfaces. The photovoltaic module was water-cooled using a prototype with a built-in motor and water pump that operated to cool and clean the photovoltaic module. Water-cooled modules are then compared to conventional modules (no modification). For the debris build-up investigation, the traditional module is covered with opaque sheets of varying sizes to simulate dust coating on the module surface. The output power is compared to the module with water cooling (zero dust coverage). According to these findings, it takes the solar module only five weeks to lose 20% of its efficiency once it has been installed. The research found that the module had a low energy conversion efficiency when the surface temperature was relatively high. The increase in surface temperature can be attributed to the production of heat energy on the surface due to the module being exposed to intense sunlight. Akademia Baru Publishing 2023-06-01 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/107548/1/Effect%20of%20water%20cooling%20and%20dust%20removal%20on%20solar%20photovoltaic%20module%20efficiency.pdf Nik Amran, Nik Muhammad Hazwan and Mohd Hassan, Siti Lailatul and Abdul Halim, Ili Shairah and Sulaiman, Nasri and Abdullah, Noor Ezan and Ab Rahim, A’zraa Afhzan (2023) Effect of water cooling and dust removal on solar photovoltaic module efficiency. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 105 (1). 184-193- 193. ISSN 2289-7879 https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/2179 10.37934/arfmts.105.1.184193
spellingShingle Nik Amran, Nik Muhammad Hazwan
Mohd Hassan, Siti Lailatul
Abdul Halim, Ili Shairah
Sulaiman, Nasri
Abdullah, Noor Ezan
Ab Rahim, A’zraa Afhzan
Effect of water cooling and dust removal on solar photovoltaic module efficiency
title Effect of water cooling and dust removal on solar photovoltaic module efficiency
title_full Effect of water cooling and dust removal on solar photovoltaic module efficiency
title_fullStr Effect of water cooling and dust removal on solar photovoltaic module efficiency
title_full_unstemmed Effect of water cooling and dust removal on solar photovoltaic module efficiency
title_short Effect of water cooling and dust removal on solar photovoltaic module efficiency
title_sort effect of water cooling and dust removal on solar photovoltaic module efficiency
url http://psasir.upm.edu.my/id/eprint/107548/1/Effect%20of%20water%20cooling%20and%20dust%20removal%20on%20solar%20photovoltaic%20module%20efficiency.pdf
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