sist of two constant-pressure processes alternated with two isentropic processes, the air standard cycle look much different when shown in the T – s diagrams of Figs. 9.10 and 8.3, respectively. The e involves phase change, while for the Brayton cycle the working fluid is a(n) T

Elements Of Electromagnetics
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Although both ideal cycles consist of two constant-pressure processes alternated with two isentropic processes, the air standard
Brayton cycle and the Rankine cycle look much different when shown in the T – s diagrams of Figs. 9.10 and 8.3, respectively. The
reason is that the Rankine cycle involves phase change, while for the Brayton cycle the working fluid is a(n)
a
2.
p= c
1
Figure 9.10
a
1'
a
4
3.
2'
Figure 8.3
2.
3.
Transcribed Image Text:Although both ideal cycles consist of two constant-pressure processes alternated with two isentropic processes, the air standard Brayton cycle and the Rankine cycle look much different when shown in the T – s diagrams of Figs. 9.10 and 8.3, respectively. The reason is that the Rankine cycle involves phase change, while for the Brayton cycle the working fluid is a(n) a 2. p= c 1 Figure 9.10 a 1' a 4 3. 2' Figure 8.3 2. 3.
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