Q3) 35% Steam enters an adiabatic turbine steadily at 7 MPa. 500°C. and 45 m/s, and leaves at 100 kPa and 75 m/s. If the power output of the turbine is 5 MW and the isentropic efficieney is 77 percent, determine (a) the mass flow rate of steam through the turbine. (b) the temperature at the turbine exit, and (c) the rate of entropy generation during this Steam, 7 MPa S0XOC 45 m/s Turbine process. 75 m

Elements Of Electromagnetics
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Q3) 35%
Steam enters an adiabatic turbine steadily at 7 MPa.
500°C, and 45 m/s, and leaves at 100 kPa and 75 m/s. If
Steam, 7 MPa
500Y C. 45 mls
the power output of the turbine is 5 MW and the isentropic
efficiency is 77 percent, determine (a) the mass flow rate
of steam through the turbine. (b) the temperature at the turbine
exit, and (c) the rate of entropy generation during this
Turbine
process.
1O LPa
75 m-
Transcribed Image Text:Q3) 35% Steam enters an adiabatic turbine steadily at 7 MPa. 500°C, and 45 m/s, and leaves at 100 kPa and 75 m/s. If Steam, 7 MPa 500Y C. 45 mls the power output of the turbine is 5 MW and the isentropic efficiency is 77 percent, determine (a) the mass flow rate of steam through the turbine. (b) the temperature at the turbine exit, and (c) the rate of entropy generation during this Turbine process. 1O LPa 75 m-
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