Water flows from reservoir A to a turbine and then discharges into tailrace B, as shown in the figure below. The loss of head from A to point 1 is 13 times the velocity head in the pipe, and the loss of head from point 2 to B is 1.0 times the velocity head in the pipe. If the flow rate in the pipe is 39 ft^3/s and the diameter of the pipe is 24 in, calculate the horsepower being generated by the turbine. Ⓒ Elev. 210 ft Elev, 10 ft Elev. 0 ft Turbine 0 24-in-diameter pipe Water

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Water flows from reservoir A to a turbine and then discharges into
tailrace B, as shown in the figure below. The loss of head from A to
point 1 is 13 times the velocity head in the pipe, and the loss of head
from point 2 to B is 1.0 times the velocity head in the pipe. If the
flow rate in the pipe is 39 ft^3/s and the diameter of the pipe is 24
in, calculate the horsepower being generated by the turbine.
Ⓒ
Elev. 210 ft
Elev, 10 ft
77
Elev. 0 ft
Turbine
0
24-in-diameter pipe
Waler
Transcribed Image Text:Water flows from reservoir A to a turbine and then discharges into tailrace B, as shown in the figure below. The loss of head from A to point 1 is 13 times the velocity head in the pipe, and the loss of head from point 2 to B is 1.0 times the velocity head in the pipe. If the flow rate in the pipe is 39 ft^3/s and the diameter of the pipe is 24 in, calculate the horsepower being generated by the turbine. Ⓒ Elev. 210 ft Elev, 10 ft 77 Elev. 0 ft Turbine 0 24-in-diameter pipe Waler
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