Consider the operation an ideal Brayton cycle used for electrical power generation with air as the working fluid. Assume the specific heats are constant. Check all that apply O The thermal efficiency only depends on the compressor pressure ratio and increasing the compressor pressure ratio increases thermal efficiency O Increasing turbine temeprature will decrease the back work ratio. Increasing turbine inlet temeprature with set pressure ratio in the compressor will decrease engine power output. Increasing turbine inlet temperature will increase thermal efficiency

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Consider the operation an ideal Brayton cycle used for electrical power
generation with air as the working fluid. Assume the specific heats are
constant. Check all that apply
The thermal efficiency only depends on the compressor pressure ratio and
increasing the compressor pressure ratio increases thermal efficiency
Increasing turbine temeprature will decrease the back work ratio.
Increasing turbine inlet temeprature with set pressure ratio in the compressor
will decrease engine power output.
O Increasing turbine inlet temperature will increase thermal efficiency
Transcribed Image Text:Consider the operation an ideal Brayton cycle used for electrical power generation with air as the working fluid. Assume the specific heats are constant. Check all that apply The thermal efficiency only depends on the compressor pressure ratio and increasing the compressor pressure ratio increases thermal efficiency Increasing turbine temeprature will decrease the back work ratio. Increasing turbine inlet temeprature with set pressure ratio in the compressor will decrease engine power output. O Increasing turbine inlet temperature will increase thermal efficiency
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