Development of a modular automated cooling system for solar powered plant

The study developed a modular automated cooling system to improve solar panel efficiency by managing operating temperatures. The system uses a water-based mechanism and sensors to monitor temperature and activate the cooling process when it exceeds a set point (300C). Experimental testing showed that the system reduced panel temperature from 36oC to 30oC and resulted in a measured increase in power output from 6.71 W to 6.83W, corresponding to an approximate 1.8% improvement in electrical power under the tested conditions. For future investigations, the study suggested the use of cutting-edge materials and intelligent technologies, along with prolonged field studies, to evaluate the system’s functionality and economic viability for widespread use.

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Publication Details

Journal
International Advanced Researches and Engineering Journal
Published
2026-08-25
DOI
https://doi.org/10.35860/iarej.1839285
Primary Topic
Solar Thermal and Photovoltaic Systems
Type
article
Field-Weighted Citation Impact
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article

Development of a modular automated cooling system for solar powered plant

Lanre Olatomiwa, Harrison Oyibo Idakwo, Marvellous Iroko
International Advanced Researches and Engineering Journal
Solar Thermal and Photovoltaic Systems
article

Development of a modular automated cooling system for solar powered plant

Lanre Olatomiwa, Harrison Oyibo Idakwo, Marvellous Iroko
article en

Abstract

The study developed a modular automated cooling system to improve solar panel efficiency by managing operating temperatures. The system uses a water-based mechanism and sensors to monitor temperature and activate the cooling process when it exceeds a set point (300C). Experimental testing showed that the system reduced panel temperature from 36oC to 30oC and resulted in a measured increase in power output from 6.71 W to 6.83W, corresponding to an approximate 1.8% improvement in electrical power under the tested conditions. For future investigations, the study suggested the use of cutting-edge materials and intelligent technologies, along with prolonged field studies, to evaluate the system’s functionality and economic viability for widespread use.

International Advanced Researches and Engineering JournalVol. 10(2)
University of Maiduguri (NG), Federal University of Technology Minna (NG)
Affordable and clean energy
Openalex Percentile: Top 27%
Solar Thermal and Photovoltaic Systems
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