g. How does the result in part (f). compare with the efficiency of a Carnot engine operating between the same maximum and minimum temperatures?

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter35: Comfort And Psychrometrics
Section: Chapter Questions
Problem 12RQ: A gas furnace has an output of 60,000 Btu/h. The return air temperature is 72F, and the temperature...
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2. A heat engine performs the cycle ABCA with 9 moles of an ideal gas. Path CA is an
adiabatic process. Temperatures at A, B, C are shown on the diagram, as are the
volumes at A, B, C.
(y = 1.6 for this gas.)
a. Find the pressures (in Pa) for states A, B, and C.
b. How much heat is absorbed by the gas in the AB process of the cycle?
c. How much heat is rejected by the gas in process BC?
d. How much heat is exchanged by the gas in process CA?
e. What is the total work done in the entire cycle?
f. What is the thermal efficiency of the engine?
g. How does the result in part (f). compare with the efficiency of a Carnot engine
operating between the same maximum and minimum temperatures?
PA
(300 K)
(500 K)
в
C (220 K)
V (m')
0.12
0.20
Transcribed Image Text:2. A heat engine performs the cycle ABCA with 9 moles of an ideal gas. Path CA is an adiabatic process. Temperatures at A, B, C are shown on the diagram, as are the volumes at A, B, C. (y = 1.6 for this gas.) a. Find the pressures (in Pa) for states A, B, and C. b. How much heat is absorbed by the gas in the AB process of the cycle? c. How much heat is rejected by the gas in process BC? d. How much heat is exchanged by the gas in process CA? e. What is the total work done in the entire cycle? f. What is the thermal efficiency of the engine? g. How does the result in part (f). compare with the efficiency of a Carnot engine operating between the same maximum and minimum temperatures? PA (300 K) (500 K) в C (220 K) V (m') 0.12 0.20
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