A turbine is supplied with the following conditions, P = 110 bar, T = 200°C, h 2900 kJ/kg, V = 36 m/s, and elevation Z = 3.3 m. The steam leaves the turbine at 30 kPa, h = 2490 kJ/kg, V = 110 m/s, and elevation Z = 0. The heat loss to the surroundings is at a rate of 0.32 kJ/s and the steam flow rate is 0.393 kg/s. determine the power output for steady- flow conditions. %3D %3D %3D

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A turbine is supplied with the following conditions, P = 110 bar, T = 200°C, h 2900
kJ/kg, V = 36 m/s, and elevation Z 3.3 m. The steam leaves the turbine at 30 kPa, h =
2490 kJ/kg, V = 110 m/s, and elevation Z = 0. The heat loss to the surroundings is at a rate
of 0.32 kJ/s and the steam flow rate is 0.393 kg/s. determine the power output for steadv-
flow conditions.
%3D
%3D
%3D
Transcribed Image Text:A turbine is supplied with the following conditions, P = 110 bar, T = 200°C, h 2900 kJ/kg, V = 36 m/s, and elevation Z 3.3 m. The steam leaves the turbine at 30 kPa, h = 2490 kJ/kg, V = 110 m/s, and elevation Z = 0. The heat loss to the surroundings is at a rate of 0.32 kJ/s and the steam flow rate is 0.393 kg/s. determine the power output for steadv- flow conditions. %3D %3D %3D
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