Q.4. In the system shown in figure, the water flow rate ,Q= 0.5 m3/s and pressure P=20 kPa are required at the point C. Calculate flow directions and flow rates in the pipes and power of the pump required in the system. Draw the energy lines in the system. Note: Neglect the local losses and take f=0.02 in the analysis. B ZA-20 m ZB=40 m zc=4 m ZD=0 m 3. A 2 Li=95 m, L2=120 m, L3=100 m L2= 125m 1 Pump D= 30 cm k=0.046 mm
Q.4. In the system shown in figure, the water flow rate ,Q= 0.5 m3/s and pressure P=20 kPa are required at the point C. Calculate flow directions and flow rates in the pipes and power of the pump required in the system. Draw the energy lines in the system. Note: Neglect the local losses and take f=0.02 in the analysis. B ZA-20 m ZB=40 m zc=4 m ZD=0 m 3. A 2 Li=95 m, L2=120 m, L3=100 m L2= 125m 1 Pump D= 30 cm k=0.046 mm
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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Question
![Q.4. In the system shown in figure, the water flow rate ,Q= 0.5 m3/s and pressure P=20 kPa
are required at the point C. Calculate flow directions and flow rates in the pipes and power of
the pump required in the system. Draw the energy lines in the system.
Note: Neglect the local losses and take f=0.02 in the analysis.
B
ZA-20 m
ZB=40 m
3
zc=4 m
ZD=0 m
A
2
Li=95 m,
L2=120 m,
L3=100 m
1
L2= 125m
Pump
D= 30 cm
D
k=0.046 mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb628b176-4f73-4356-aac5-d447d39ac4aa%2F61b5ef64-9a85-44fd-9d6a-f0eef5698c4b%2Fenvr6til_processed.png&w=3840&q=75)
Transcribed Image Text:Q.4. In the system shown in figure, the water flow rate ,Q= 0.5 m3/s and pressure P=20 kPa
are required at the point C. Calculate flow directions and flow rates in the pipes and power of
the pump required in the system. Draw the energy lines in the system.
Note: Neglect the local losses and take f=0.02 in the analysis.
B
ZA-20 m
ZB=40 m
3
zc=4 m
ZD=0 m
A
2
Li=95 m,
L2=120 m,
L3=100 m
1
L2= 125m
Pump
D= 30 cm
D
k=0.046 mm
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