A steady state flow of saturated water vapor at 5 bar with a velocity of 14 m/s enters a horizontal pipe with a diameter of 15 cm. If steam exits the pipe at 4.5 bar with a quality of 94%, calculate the heat transfer for the process in kW.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A steady state flow of saturated water vapor at 5 bar with a velocity of 14 m/s enters a
horizontal pipe with a diameter of 15 cm. If steam exits the pipe at 4.5 bar with a quality
of 94%, calculate the heat transfer for the process in kW.
hint: No need to calculate the change in the kinetic energy, use velocity and pipe diameter in
the calculation of the mass flow rate
а. -63.3
b. -87.1
О с. -95.6
d. -106.8
e. -122.6
O f. -133.4
O g. -145.3
Transcribed Image Text:A steady state flow of saturated water vapor at 5 bar with a velocity of 14 m/s enters a horizontal pipe with a diameter of 15 cm. If steam exits the pipe at 4.5 bar with a quality of 94%, calculate the heat transfer for the process in kW. hint: No need to calculate the change in the kinetic energy, use velocity and pipe diameter in the calculation of the mass flow rate а. -63.3 b. -87.1 О с. -95.6 d. -106.8 e. -122.6 O f. -133.4 O g. -145.3
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