Q12) A stationary power plant operating on an ideal Brayton cycle has a pressure ratio of 8. The gas temperature is 300 K at the compressor inlet and 1300 K at the turbine inlet. Utilizing the cold-air standard assumptions, and assume the specific heats are constants. determine: a- The gas temperature at the exits of the compressor and turbine. b- The back work ratio. c- The thermal efficiency.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q12) A stationary power plant operating on an ideal Brayton cycle has a pressure ratio of 8. The gas temperature is 300 K at the compressor inlet and 1300 K at the turbine inlet. Utilizing the cold-air standard assumptions, and assume the specific heats are constants. determine: a- The gas temperature at the exits of the compressor and turbine. b- The back work ratio. c- The thermal efficiency
Q12) A stationary power plant operating on an ideal
Brayton cycle has a pressure ratio of 8. The gas
temperature is 300 K at the compressor inlet and 1300
K at the turbine inlet. Utilizing the cold-air standard
assumptions, and assume the specific heats are
constants. determine:
a- The gas temperature at the exits of the compressor
and turbine.
b- The back work ratio.
c- The thermal efficiency.
Transcribed Image Text:Q12) A stationary power plant operating on an ideal Brayton cycle has a pressure ratio of 8. The gas temperature is 300 K at the compressor inlet and 1300 K at the turbine inlet. Utilizing the cold-air standard assumptions, and assume the specific heats are constants. determine: a- The gas temperature at the exits of the compressor and turbine. b- The back work ratio. c- The thermal efficiency.
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