Question-1 In the transmission system shown in Figure below, EA = 155 m and ED = 175 m. The Hazen-Williams coefficient, CHw =130 for all the pipes. Pipe AB is 1200 m long with a diameter of 60 cm, and pipe CD is 850 m long with a diameter of 60 cm. The branch BC1 has a length of 200 m and a diameter of 30 cm, and branch BC2 is 600 m long with a diameter of 50 cm. The pump characteristics are shown in the following table. Determine the system flow rate and the discharge in branches 1 and 2. Q (m³/s) Hр (m) ED 50.0 0.2 47.6 0.4 43.2 D 0.6 36.8 0.8 28.4 1.0 18.0

Elements Of Electromagnetics
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Question-1
In the transmission system shown in Figure below, EA = 155 m and Ep = 175 m. The Hazen-Williams
coefficient, CHw =130 for all the pipes. Pipe AB is 1200 m long with a diameter of 60 cm, and pipe CD is 850
m long with a diameter of 60 cm. The branch BC1 has a length of 200 m and a diameter of 30 cm, and branch
BC2 is 600 m long with a diameter of 50 cm. The pump characteristics are shown in the following table.
Determine the system flow rate and the discharge in branches 1 and 2.
Q (m/s)
H (т)
Ep
50.0
0.2
47.6
0.4
43.2
D
0.6
36.8
0.8
28.4
1.0
18.0
EA
Question-2
In the problem above, if the pump is installed at point B, how the solution will be changed?
Please solve Q2
Transcribed Image Text:Question-1 In the transmission system shown in Figure below, EA = 155 m and Ep = 175 m. The Hazen-Williams coefficient, CHw =130 for all the pipes. Pipe AB is 1200 m long with a diameter of 60 cm, and pipe CD is 850 m long with a diameter of 60 cm. The branch BC1 has a length of 200 m and a diameter of 30 cm, and branch BC2 is 600 m long with a diameter of 50 cm. The pump characteristics are shown in the following table. Determine the system flow rate and the discharge in branches 1 and 2. Q (m/s) H (т) Ep 50.0 0.2 47.6 0.4 43.2 D 0.6 36.8 0.8 28.4 1.0 18.0 EA Question-2 In the problem above, if the pump is installed at point B, how the solution will be changed? Please solve Q2
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