Water is flowing through a venturimeter shown. The difference in pressure between A (D = 5cm) and B (D = 2cm) is measured using open tubes. If h is 60cm, solve the volumetric flowrate. h 1 2 O 0.0029m^3/s O 0.0011m^3/s O 0.0025m^3/s

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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The choices are there. Pls show complete solution. we only accept 4 decimal places and refeer  to 9.807 m/s^2 instead of 9.81. thank you

Water is flowing through a venturimeter shown. The difference in pressure between A (D = 5cm) and B (D = 2cm) is measured using open tubes. If h is 60cm, solve
the volumetric flowrate.
h
1
2
O 0.0029m^3/s
O 0.0011m^3/s
O 0.0025m^3/s
O 0.0016m^3/s
Transcribed Image Text:Water is flowing through a venturimeter shown. The difference in pressure between A (D = 5cm) and B (D = 2cm) is measured using open tubes. If h is 60cm, solve the volumetric flowrate. h 1 2 O 0.0029m^3/s O 0.0011m^3/s O 0.0025m^3/s O 0.0016m^3/s
A turbine system is harnessing the energy of flowing water from reservoir 1 to reservoir 2. The difference in elevation between the two
reservoirs is 120ft. For a design flowrate of 50ft^3/s, the head loss is 60ft. Solve the theoretical power extracted by the turbine. Neglect the
difference in atmospheric pressure between the reservoirs.
O 817hp
O 341hp
O 490hp
O 1022hp
Transcribed Image Text:A turbine system is harnessing the energy of flowing water from reservoir 1 to reservoir 2. The difference in elevation between the two reservoirs is 120ft. For a design flowrate of 50ft^3/s, the head loss is 60ft. Solve the theoretical power extracted by the turbine. Neglect the difference in atmospheric pressure between the reservoirs. O 817hp O 341hp O 490hp O 1022hp
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