P1 10 Boiler 12. P13 8200 PIV 14 16 Closed Closed FWHI FWHII 8 T13 350 13 PIII High-P Turbine Open FWH PII of P14 5200 T[C] 17 Low-P Turbine 18 m P15 3000 PI рекрај - Reversible processes. There is no pressure drop in the boiler and pipes. The turbines are adiabatic (adiabatic + reversal = sentropic.) The inlet temperatures to the turbines are the same. At the entrance to each pump, the water is in a state of saturated liquid. In closed heat exchangers, the cooling water is at of the dis Condenser P16 290 P18 110
P1 10 Boiler 12. P13 8200 PIV 14 16 Closed Closed FWHI FWHII 8 T13 350 13 PIII High-P Turbine Open FWH PII of P14 5200 T[C] 17 Low-P Turbine 18 m P15 3000 PI рекрај - Reversible processes. There is no pressure drop in the boiler and pipes. The turbines are adiabatic (adiabatic + reversal = sentropic.) The inlet temperatures to the turbines are the same. At the entrance to each pump, the water is in a state of saturated liquid. In closed heat exchangers, the cooling water is at of the dis Condenser P16 290 P18 110
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Transcribed Image Text:Plot the cycle points on a T-s diagram
C. Calculate the specific power of the turbines (each separately.)
d. Calculate the specific work of the pumps (each separately)
E. Calculate the amount of specific heat evacuated in the condenser.
![P1
10
Boiler
12
10
P13
8200
Closed
FWHI
PIV
14
8
16
T13
350
13
Closed
FWH II
PIII
High-P
Turbine
Open
FWH
PII
10H
P14
5200
+[C]
17
Low-P
Turbine
18 m
P15
3000
PI
р[кра]
Reversible processes.
• There is no pressure drop in the boiler and pipes.
• The turbines are adiabatic (adiabatic + reversal =
isentropic.)
• The inlet temperatures to the turbines are the
same.
• At the entrance to each pump, the water is in a
state of saturated liquid.
• In closed heat exchangers, the cooling water is at
the saturation temperature of the discharge water
19
11
Condenser
P16
290
P18
110](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6cc62e83-5c70-4c6d-b2ef-77488dd05fc6%2F0310f2b0-bce9-48a0-87a1-84e96b906e04%2Fw0j4p9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:P1
10
Boiler
12
10
P13
8200
Closed
FWHI
PIV
14
8
16
T13
350
13
Closed
FWH II
PIII
High-P
Turbine
Open
FWH
PII
10H
P14
5200
+[C]
17
Low-P
Turbine
18 m
P15
3000
PI
р[кра]
Reversible processes.
• There is no pressure drop in the boiler and pipes.
• The turbines are adiabatic (adiabatic + reversal =
isentropic.)
• The inlet temperatures to the turbines are the
same.
• At the entrance to each pump, the water is in a
state of saturated liquid.
• In closed heat exchangers, the cooling water is at
the saturation temperature of the discharge water
19
11
Condenser
P16
290
P18
110
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why does h[11] = h[10]= h[12], thank you so much
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