Steam flows steadily through an adiabatic turbine. The inlet conditions the steam are 10 MPa, 450°C, and 90 m/s, and the exit conditions are 50°C, and 40 m/s. he mass flow rate of the steam is 12 kg/s. The power output of the turbine is 10.2 MW. etermine (a) the pressure of the water as it leaves the turbine, (b) the quality x of the water as it leaves the turbine, (c) the inlet and outlet cross-sectional area. سالم STEAM

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Steam flows steadily through an adiabatic turbine. The inlet conditions
of the steam are 10 MPa, 450°C, and 90 m/s, and the exit conditions are 50°C, and 40 m/s.
The mass flow rate of the steam is 12 kg/s. The power output of the turbine is 10.2 MW.
Determine
(a) the pressure of the water as it leaves the turbine,
(b) the quality x of the water as it leaves the turbine,
(c) the inlet and outlet cross-sectional area.
STEAM
m = 12 kg/s
Wout
Figure P1 Schematic for Problem 1
Transcribed Image Text:Steam flows steadily through an adiabatic turbine. The inlet conditions of the steam are 10 MPa, 450°C, and 90 m/s, and the exit conditions are 50°C, and 40 m/s. The mass flow rate of the steam is 12 kg/s. The power output of the turbine is 10.2 MW. Determine (a) the pressure of the water as it leaves the turbine, (b) the quality x of the water as it leaves the turbine, (c) the inlet and outlet cross-sectional area. STEAM m = 12 kg/s Wout Figure P1 Schematic for Problem 1
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