3. A wind turbine has a blade length of 25 m. In a given day, average speed of wind for 7 hours is 9 m/s, average speed of wind for another 6 hours is 10 m/s and wind speed is not sufficient to rotate wind turbine for remaining time in a day. Take Air density e = 1.23 kg/m. Determine the following: a) Maximum possible power output of wind turbine for 7 hours b) Maximum possible power output of wind turbine for 6 hours

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3. A wind turbine has a blade length of 25 m. In a given day, average speed of
wind for 7 hours is 9 m/s, average speed of wind for another 6 hours is 10 m/s
and wind speed is not sufficient to rotate wind turbine for remaining time in a
day. Take Air density g = 1.23 kg/m.
Determine the following:
a) Maximum possible power output of wind turbine for 7 hours
b) Maximum possible power output of wind turbine for 6 hours
c) Maximum possible energy output of turbine in a given day
Transcribed Image Text:3. A wind turbine has a blade length of 25 m. In a given day, average speed of wind for 7 hours is 9 m/s, average speed of wind for another 6 hours is 10 m/s and wind speed is not sufficient to rotate wind turbine for remaining time in a day. Take Air density g = 1.23 kg/m. Determine the following: a) Maximum possible power output of wind turbine for 7 hours b) Maximum possible power output of wind turbine for 6 hours c) Maximum possible energy output of turbine in a given day
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