LAPSE:2023.29522
Published Article

LAPSE:2023.29522
The Simultaneous Impacts of Seasonal Weather and Solar Conditions on PV Panels Electrical Characteristics
April 13, 2023
Abstract
Solar energy usage is thriving day by day. These solar panels are installed to absorb solar energy and produce electrical energy. As a result, the efficiency of solar panels depends on different environmental factors, namely, air temperature, dust (aerosols and accumulated dust), and solar incidence, and photovoltaic panel angles. The effects of real conditions factors on power and efficiency of photovoltaic panels are studied in this paper through testing the panel in real environmental tests. To study the mentioned parameters precisely, two panels with different angles are used. The case study is regarding a region of Tehran, Iran, in summer and winter seasons. The results show that panel efficiency during winter is higher than summer due to air temperature decrement. It is discovered that among air pollutants, Al and Fe have the most share in polluting the air that affect the photovoltaic efficiency. Moreover, measuring the accumulated dust on the panels shows more amount in winter in comparison with summer. The important point in studying the effect of tilt angle is that inconformity between solar incidence and photovoltaic panel angles would result in solar radiation absorption and eventually panel efficiency loss and also, photovoltaic panel installation angle would affect the amount of dust deposited on its surface.
Solar energy usage is thriving day by day. These solar panels are installed to absorb solar energy and produce electrical energy. As a result, the efficiency of solar panels depends on different environmental factors, namely, air temperature, dust (aerosols and accumulated dust), and solar incidence, and photovoltaic panel angles. The effects of real conditions factors on power and efficiency of photovoltaic panels are studied in this paper through testing the panel in real environmental tests. To study the mentioned parameters precisely, two panels with different angles are used. The case study is regarding a region of Tehran, Iran, in summer and winter seasons. The results show that panel efficiency during winter is higher than summer due to air temperature decrement. It is discovered that among air pollutants, Al and Fe have the most share in polluting the air that affect the photovoltaic efficiency. Moreover, measuring the accumulated dust on the panels shows more amount in winter in comparison with summer. The important point in studying the effect of tilt angle is that inconformity between solar incidence and photovoltaic panel angles would result in solar radiation absorption and eventually panel efficiency loss and also, photovoltaic panel installation angle would affect the amount of dust deposited on its surface.
Record ID
Keywords
air temperature effect, dust effect, photovoltaic efficiency, real condition, solar incidence angle
Subject
Suggested Citation
Farahmand MZ, Nazari ME, Shamlou S, Shafie-khah M. The Simultaneous Impacts of Seasonal Weather and Solar Conditions on PV Panels Electrical Characteristics. (2023). LAPSE:2023.29522
Author Affiliations
Farahmand MZ: Department of Electrical Engineering, K. N. Toosi University of Technology, Tehran 1969764499, Iran
Nazari ME: Department of Electrical Engineering, Golpayegan University of Technology, Golpayegan 87717-65651, Iran
Shamlou S: Department of Electrical Engineering, K. N. Toosi University of Technology, Tehran 1969764499, Iran
Shafie-khah M: School of Technology and Innovations, University of Vaasa, 65200 Vaasa, Finland [ORCID]
Nazari ME: Department of Electrical Engineering, Golpayegan University of Technology, Golpayegan 87717-65651, Iran
Shamlou S: Department of Electrical Engineering, K. N. Toosi University of Technology, Tehran 1969764499, Iran
Shafie-khah M: School of Technology and Innovations, University of Vaasa, 65200 Vaasa, Finland [ORCID]
Journal Name
Energies
Volume
14
Issue
4
First Page
845
Year
2021
Publication Date
2021-02-05
ISSN
1996-1073
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Original Submission
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PII: en14040845, Publication Type: Journal Article
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LAPSE:2023.29522
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https://doi.org/10.3390/en14040845
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