Air enters the compressor of an ideal air-standard Brayton cycle at 100 kPa, 27 °C, with a volumetric flow rate of 5 m3/s. The compressor pressure ratio is 10. The turbine inlet temperature is 1127 °C. Assume cold-air analysis, determine the net power developed, in kW. 2500 2900 2300 D 2700

Elements Of Electromagnetics
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Air enters the compressor of an ideal air-standard Brayton cycle at 100 kPa, 27 °C, with a volumetric flow rate
of 5 m3/s. The compressor pressure ratio is 10. The turbine inlet temperature is 1127 °C. Assume cold-air analysis,
determine the net power developed, in kW.
A) 2500
B) 2900
2300
D 2700
Transcribed Image Text:Air enters the compressor of an ideal air-standard Brayton cycle at 100 kPa, 27 °C, with a volumetric flow rate of 5 m3/s. The compressor pressure ratio is 10. The turbine inlet temperature is 1127 °C. Assume cold-air analysis, determine the net power developed, in kW. A) 2500 B) 2900 2300 D 2700
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