6.2 At the concrete dam bottom shown in the figure, a pipe of diameter d takes water through a water turbine and discharges it into the atmosphere. If the water head is h, the friction loss through the suction pipe is HL, and the pressure at the turbine inlet is p gage. Determine the fluid power P in kW that delivered by the turbine.
6.2 At the concrete dam bottom shown in the figure, a pipe of diameter d takes water through a water turbine and discharges it into the atmosphere. If the water head is h, the friction loss through the suction pipe is HL, and the pressure at the turbine inlet is p gage. Determine the fluid power P in kW that delivered by the turbine.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![6.2 At the concrete dam bottom shown in the figure, a pipe of diameter
d takes water through a water turbine and discharges it into the
2/3
atmosphere. If the water head is h, the friction loss through the
suction pipe is H1, and the pressure at the turbine inlet is p gage.
Determine the fluid power P in kW that delivered by the turbine.
Water
h
Concrete
dam
h = 85 m
d = 140 mm
p = 12.5 bar
HL =10 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F03937fa5-e422-457f-a3b6-f333fd235eaa%2Fd04f2ae3-82be-4fc5-a1a8-52dc67e653e7%2Fwk2yt2u_processed.jpeg&w=3840&q=75)
Transcribed Image Text:6.2 At the concrete dam bottom shown in the figure, a pipe of diameter
d takes water through a water turbine and discharges it into the
2/3
atmosphere. If the water head is h, the friction loss through the
suction pipe is H1, and the pressure at the turbine inlet is p gage.
Determine the fluid power P in kW that delivered by the turbine.
Water
h
Concrete
dam
h = 85 m
d = 140 mm
p = 12.5 bar
HL =10 m
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