In the branched-pipe system shown in Fig. 12.9,1350 gal/ min of benzene (sg 0.87) at 140°F is flowing in the 8-in pipe. Calculate the volume flow rate in the 6-in and the 2-in pipes. All pipes are standard Schedule 40 steel pipes.

Elements Of Electromagnetics
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In the branched-pipe system shown in Fig. 12.9,1350 gal/ min of benzene (sg 0.87) at 140°F is flowing in the 8-in pipe. Calculate the volume flow rate in the 6-in and the 2-in pipes. All pipes are standard Schedule 40 steel pipes.

Both pipes are hydraulic cop-
0 m long. (The fluid is water at 10°C.)
the resistance coefficient K of the valve
s 12.4
lem 12.5.
8 in
6 in
160-mm OD x 5.5-mm wall
12.7 Solve Problem 12.4, using the Cross techniqu
12.8 Solve Problem 12.3, using the Cross technique
CHT Z
Z omny open.
c. Valve in branch 1 only open.
Fully open
globe valve
500 ft
100-mm OD
x 3.5-mm
2 in
Valve
K=?
fat
Swing-type
check valve
8 in
160-mm OD x 5.5-mm wall
Transcribed Image Text:Both pipes are hydraulic cop- 0 m long. (The fluid is water at 10°C.) the resistance coefficient K of the valve s 12.4 lem 12.5. 8 in 6 in 160-mm OD x 5.5-mm wall 12.7 Solve Problem 12.4, using the Cross techniqu 12.8 Solve Problem 12.3, using the Cross technique CHT Z Z omny open. c. Valve in branch 1 only open. Fully open globe valve 500 ft 100-mm OD x 3.5-mm 2 in Valve K=? fat Swing-type check valve 8 in 160-mm OD x 5.5-mm wall
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