The 150 mm pipeline as shown conducts water from a reservoir and discharges at a lower elevation through a nozzie which has a discharge diameter of 50 mm. The water surface in the reservoir (1) is at elevation 30 m and the pipe intake ( 2 and 3) at elevation 24 m and the nozzle ( 4 and 5) at elevation O m. The head losses are: from 1 to 2, 0 m; from 2 to 3, 0.60 m; from 3 to 4, 10 m; from 4 to 5, 0.30 m. Compute the discharge and make a table showing elevation head, velocity head, pressure head and total head at each of the five points. EL 30m. EL. 24 m. 150 mm pipe EL O 50 mm jet Table of Heads 1 2 3 4 5 v² 2g E

Elements Of Electromagnetics
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The 150 mm pipeline as shown conducts water from a reservoir and discharges at a lower elevation
through a nozzie which has a discharge diameter of 50 mm. The water surface in the reservoir (1) is at
elevation 30 m and the pipe intake ( 2 and 3) at elevation 24 m and the nozzle ( 4 and 5) at elevation
O m. The head losses are: from 1 to 2,0 m; from 2 to 3, 0.60 m; from 3 to 4, 10 m; from 4 to 5, 0.30 m.
Compute the discharge and make a table showing elevation head, velocity head, pressure head and total
head at each of the five points.
EL 30m.
EL. 24 m
1s0 mm pipe
EL O
50 mm
jet
Table of Heads
1
3
4
5
v²
2g
E
Transcribed Image Text:The 150 mm pipeline as shown conducts water from a reservoir and discharges at a lower elevation through a nozzie which has a discharge diameter of 50 mm. The water surface in the reservoir (1) is at elevation 30 m and the pipe intake ( 2 and 3) at elevation 24 m and the nozzle ( 4 and 5) at elevation O m. The head losses are: from 1 to 2,0 m; from 2 to 3, 0.60 m; from 3 to 4, 10 m; from 4 to 5, 0.30 m. Compute the discharge and make a table showing elevation head, velocity head, pressure head and total head at each of the five points. EL 30m. EL. 24 m 1s0 mm pipe EL O 50 mm jet Table of Heads 1 3 4 5 v² 2g E
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