Suppose that a wind turbine with a blade length 40 m and power coefficient of 0. on shore. The air density is 1.2 kg/m. In a certain day the wind speed was abG the first 8 hours of that day. Then it dropped to 8.5 m/s for the next 10 hours became 7 m/s. Calculate the followings 1) The wind power in each time period of that day. 2 The power generated in each time neriod of that de grind

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
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Chapter5: Analysis Of Convection Heat Transfer
Section: Chapter Questions
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. Suppose that a wind turbine with a blade length 40 m and power coefficient of 0.27 installed
on shore. The air density is 1.2 kg/m'. In a certain day the wind speed was about 13 m/s in
the first 8 hours of that day. Then it dropped to 8.5 m/s for the next 10 hours and finally
became 7 m/s. Calculate the followings
1) The wind power in each time period of that day.
2) The power generated in each time period of that day.
3) The maximum theoretical generated power in each time period of that day.
4) What is the approximate cost of power generated in this day?
Transcribed Image Text:. Suppose that a wind turbine with a blade length 40 m and power coefficient of 0.27 installed on shore. The air density is 1.2 kg/m'. In a certain day the wind speed was about 13 m/s in the first 8 hours of that day. Then it dropped to 8.5 m/s for the next 10 hours and finally became 7 m/s. Calculate the followings 1) The wind power in each time period of that day. 2) The power generated in each time period of that day. 3) The maximum theoretical generated power in each time period of that day. 4) What is the approximate cost of power generated in this day?
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