Question 2 a) Show that for air undergoing a steady flow compression process, the specific work of compression (J/kg) can be expressed in the form: CpT1 -1)/Y – 1). We Where T1 is the entry temperature of air, rp the compressor pressure ratio and 7c its isentropic efficiency. y is the ratio of specific heats for air. b) Explain the effect on compressor work input of changes in (i) isentropic efficiency no and (ii) inlet temperature T1.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Question 2
a)
Show that for air undergoing a steady flow compression process, the specific work of
compression (J/kg) can be expressed in the form:
Wc =
= 1G-1)/Y – 1)
Where T1 is the entry temperature of air, rp the compressor pressure ratio and 7c its
isentropic efficiency. y is the ratio of specific heats for air.
b)
Explain the effect on compressor work input of changes in (i) isentropic efficiency no
and (ii) inlet temperature T1.
The compressor is now part of a gas turbine power plant.
i)
Explain what effect the changes enumerated in question 2b) above would
have on the net work output of the plant.
ii) Practically, why does intercooling increase the net work output?
Transcribed Image Text:Question 2 a) Show that for air undergoing a steady flow compression process, the specific work of compression (J/kg) can be expressed in the form: Wc = = 1G-1)/Y – 1) Where T1 is the entry temperature of air, rp the compressor pressure ratio and 7c its isentropic efficiency. y is the ratio of specific heats for air. b) Explain the effect on compressor work input of changes in (i) isentropic efficiency no and (ii) inlet temperature T1. The compressor is now part of a gas turbine power plant. i) Explain what effect the changes enumerated in question 2b) above would have on the net work output of the plant. ii) Practically, why does intercooling increase the net work output?
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