fuel power plants? 2) There is a mono-crystal Si photovoltaic panel (size: 80 cm x 60 cm). 88% of the total panel area is covered by cells. The values of the characteristic parameter at the Standard Test Conditions (Tef= 25 °C, Grd= 1000 W/m?, Air Mass = 1.5) given by the manufacturer are: Ve =21 V, I=1.94 A, Vmax = 16.8 V, Imax = 1.78 A. Calculate the maximum power (Pma), fill factor (FF) and panel efficiency (7) under: (a) Air Mass =1.2 %3! (b) I= 800 W/m² solar irradiation. %3D

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làn fossil fuel power plants?
2) There is a mono-crystal Si photovoltaic panel (size: 80 cm x 60 cm). 88% of the total
panel area is covered by cells. The values of the characteristic parameter at the
Standard Test Conditions (Tref= 25 °C, G= 1000 W/m?, Air Mass = 1.5) given by
the manufacturer are: Voc =21 V, L=1.94 A, Vmax = 16.8 V, Imax = 1.78 A.
Calculate the maximum power (Pma), fill factor (FF) and panel efficiency (n) under:
(a) Air Mass = 1.2
%3D
%3D
(b) I= 800 W/m solar irradiation.
Assume that currents are directly proportional to and voltages are independent from
solar irradiation.
(c) Calculate the energy productions for 8 hours operation under both these conditions.
3) The n
Transcribed Image Text:làn fossil fuel power plants? 2) There is a mono-crystal Si photovoltaic panel (size: 80 cm x 60 cm). 88% of the total panel area is covered by cells. The values of the characteristic parameter at the Standard Test Conditions (Tref= 25 °C, G= 1000 W/m?, Air Mass = 1.5) given by the manufacturer are: Voc =21 V, L=1.94 A, Vmax = 16.8 V, Imax = 1.78 A. Calculate the maximum power (Pma), fill factor (FF) and panel efficiency (n) under: (a) Air Mass = 1.2 %3D %3D (b) I= 800 W/m solar irradiation. Assume that currents are directly proportional to and voltages are independent from solar irradiation. (c) Calculate the energy productions for 8 hours operation under both these conditions. 3) The n
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