Effect of Solar Cell Temperature on its Photovoltaic Conversion Efficiency
International Journal of Scientific & Engineering Research • 2015
معلومات البحث
المؤلفون
M K. El-Adaw , S A. Shalaby , S.E.-S. Abd El-Ghany and M.A.Attallah
الكلمات المفتاحية
Solar Cell Temperature; PhotovoltaicConversion Efficiency;
Solar Cell Performance; Solar Energy; Heat Balance Equation
المجلة العلمية
International Journal of Scientific & Engineering Research
الناشر
IJSER
المجلد
6
العدد
3
الصفحات
1359-1384
publication.type
International
رابط البحث
Not Available
المواد المرفقة
Not Available
الملخص
The solar energy conversion is investigated theoretically. The variation of the temperature of the solar cell subjected to the incident global solar radiation along the local day time is determined.
The heat balance equation is solved .The solution revealed that the cell temperature is a function of the maximum value of the daily incident global solar radiation qmax,the cooling coefficient (h), the optical parameters, physical parameters, and the geometrical parameters of the cell .
The temperature dependence of the short circuit current Isc ,the dark saturation current I0 , the open circuit voltage Voc , and the energy band gap characterizing a Silicon solar cell is considered in evaluating the cell efficiency .
Computations of the efficiency concerning different operating conditions and different astronomical locations (Egypt and Hong Kong) as illustrative examples are given.
The heat balance equation is solved .The solution revealed that the cell temperature is a function of the maximum value of the daily incident global solar radiation qmax,the cooling coefficient (h), the optical parameters, physical parameters, and the geometrical parameters of the cell .
The temperature dependence of the short circuit current Isc ,the dark saturation current I0 , the open circuit voltage Voc , and the energy band gap characterizing a Silicon solar cell is considered in evaluating the cell efficiency .
Computations of the efficiency concerning different operating conditions and different astronomical locations (Egypt and Hong Kong) as illustrative examples are given.
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