An axial compressor with a mean diameter of 0.8 m is being designed to run at 3000 rpm. The whirl velocities at the inlet and outlet are 5m/s and 30 m/s, respectively. The air mass flow rate through the compressor is 2 kg/s at a temperature of 27 °C.
An axial compressor with a mean diameter of 0.8 m is being designed to run at 3000 rpm. The whirl velocities at the inlet and outlet are 5m/s and 30 m/s, respectively. The air mass flow rate through the compressor is 2 kg/s at a temperature of 27 °C.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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![An axial compressor with a mean diameter
of 0.8 m is being designed to run at 3000
rpm. The whirl velocities at the inlet and
outlet are 5m/s and 30 m/s, respectively.
The air mass flow rate through the
compressor is 2 kg/s at a temperature of
27 °C.
Assume C, of air equal to 1000 J/kg-K
and C, = 718 J/kg-K.
The power of the turbomạchine is
O 2.07 kW
3.14 kW
5.21 kW
O 6.28 kW](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe9fb7696-6e7d-416d-a285-6ba762dd6893%2F6e38cac9-bc04-450c-a6e4-50fa864d6359%2Fmtune4_processed.jpeg&w=3840&q=75)
Transcribed Image Text:An axial compressor with a mean diameter
of 0.8 m is being designed to run at 3000
rpm. The whirl velocities at the inlet and
outlet are 5m/s and 30 m/s, respectively.
The air mass flow rate through the
compressor is 2 kg/s at a temperature of
27 °C.
Assume C, of air equal to 1000 J/kg-K
and C, = 718 J/kg-K.
The power of the turbomạchine is
O 2.07 kW
3.14 kW
5.21 kW
O 6.28 kW
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