Effect of Ambient Temperature and Solar Irradiance on Photovoltaic Modules' Performance
- سال انتشار: 1403
- محل انتشار: فصلنامه انرژی و محیط زیست ایران (ایرانیکا)، دوره: 15، شماره: 4
- کد COI اختصاصی: JR_IJEE-15-4_008
- زبان مقاله: انگلیسی
- تعداد مشاهده: 57
نویسندگان
Department of Electrical and Electronics Engineering, Faculty of Engineering, Olabisi Onabanjo University, Ago-Iwoye, Nigeria
Department of Electrical and Electronics Engineering, Faculty of Engineering, Olabisi Onabanjo University, Ago-Iwoye, Nigeria
Department of Electrical and Electronics Engineering, Faculty of Engineering, Olabisi Onabanjo University, Ago-Iwoye, Nigeria
Department of Electrical and Electronic Engineering, Faculty of Engineering, Osun State University, Osogbo, Nigeria
Department of Mechanical Engineering, Faculty of Engineering, Osun State University, Osogbo, Nigeria
Research and Development Unit of Risen Energy & Power Solution, Lagos, Nigeria
چکیده
The impact of solar radiation and ambient temperature on solar PV energy yield and its corresponding economic implication was investigated. The electrical load assessment was done by physical inspection through periodic visits to study location. Five different scenarios were investigated for two locations - Ogun and Bayelsa States: Case I considers the PV performance based on the locations’ historical solar radiation and temperature data, Case II considers ۳۰ % increase in the solar radiation data while the ambient temperature data remains fixed, Case III focuses on when solar radiation data is decreased by ۳۰ % while the ambient temperature data remains constant, Case IV considers the solar radiation data remains constant while the temperature values are increased by ۳۰ %, and Case V examined the same solar radiation values with temperature data values being decreased by ۳۰ %. The HOMER pro was used as the implementation tool, Electrical energy yield, Unmet electric load, Net present cost, Levelized cost, and Operating cost for Cases I, II, III, IV, and V in Ota, Ogun State were as follows: ۲۸,۶۵۹ kWh/y, ۴.۷۱kWh/y, ۱۳,۵۳۷, ۰.۱۶۶, ۲۷۱.۴۳kWh/y; ۳۷,۲۶۰ kWh/y, ۱.۶۳kWh/y, ۱۲,۴۱۷, ۰.۱۵۲, ۲۹۰.۴۳kWh/y; ۲۰,۰۵۸kWh/y, ۳.۲۲kWh/y, ۱۵,۶۶۳, ۰.۱۹۲, ۲۹۳.۱۴kWh/y; ۲۸,۶۵۹kWh/y, ۴.۷۱kWh/y, ۱۳,۵۳۷, ۰.۱۶۶, ۲۷۱.۴۳kWh/y; and ۲۸,۶۵۹kWh/y, ۴.۶۱kWh/y, ۱۳,۴۳۷, ۰.۱۵۶, ۲۶۱.۴۳kWh/y, respectively while similar trend was observed for Otuasega in Bayelsa State. The results of the analysis showed that the optimal performance of the PV module occurred at a higher solar radiation and a lower ambient temperature.کلیدواژه ها
Ambient Temperature, Hybrid optimization of multiple electric, Photovoltaic Cells, Renewables, Solar irradianceاطلاعات بیشتر در مورد COI
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