Steam enters a turbine with an enthalpy of 3300 KJ/kg and leaves with an enthalpy of 2400 kJ/kg. The power output of the steam turbine is 6 MW. Inlet: v1= 60m/s, z1= 12m. Exit v2= 200m/s, z2=5m. Determine the change in enthalpy per unit mass.  Determine the change in kinetic energy per unit mass. Determine the change in potential energy. Determine the work done per unit mass of the steam flowing through the turbine. Calculate the mass flow Rate of the steam.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Steam enters a turbine with an enthalpy of 3300 KJ/kg and leaves with an enthalpy of 2400 kJ/kg. The power output of the steam turbine is 6 MW.

Inlet: v1= 60m/s, z1= 12m. Exit v2= 200m/s, z2=5m.

Determine the change in enthalpy per unit mass. 

Determine the change in kinetic energy per unit mass.

Determine the change in potential energy.

Determine the work done per unit mass of the steam flowing through the turbine.

Calculate the mass flow Rate of the steam.

INLET
EXIT
inlet
0;= 60 m/s
U3= 200 m/s
2,=12 m
23=5 m
Steam
turbine
Exit
Transcribed Image Text:INLET EXIT inlet 0;= 60 m/s U3= 200 m/s 2,=12 m 23=5 m Steam turbine Exit
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