Steam at 80 bar, 440 °C, enters a turbine operating at steady state with a volumetric flow rate of 236 m'/min. Twenty percent of the entering mass flow exits through a diameter of 0.25 m at 60 bar, 400 *C. The rest exits through a diameter of 1.5 m with a pressure of 0.7 bar and a quality of 90 %. Determine the velocity at each exit duct, in m/s. A- 80 bar -440°C (AV), - 236 m

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Steam at 80 bar, 440 °C, enters a
turbine operating at steady state
with a volumetric flow rate of 236
m'/min. Twenty percent of the
entering mass flow exits through a
diameter of 0.25 m at 60 bar, 400
*C. The rest exits through a
diameter of 1.5 m with a pressure
of 0.7 bar and a quality of 90 %.
Determine the velocity at each exit duct, in m/s.
A- 80 bar
-440°C
(AV), - 236 m
Transcribed Image Text:Steam at 80 bar, 440 °C, enters a turbine operating at steady state with a volumetric flow rate of 236 m'/min. Twenty percent of the entering mass flow exits through a diameter of 0.25 m at 60 bar, 400 *C. The rest exits through a diameter of 1.5 m with a pressure of 0.7 bar and a quality of 90 %. Determine the velocity at each exit duct, in m/s. A- 80 bar -440°C (AV), - 236 m
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