Flow Measurement Worked Examples
Each problem states the calibration coefficient and measurement geometry it uses. Empirical constants are treated as model inputs rather than universal physical constants.
Problem 1: Discharge Through a Tank Orifice
A circular sharp-edged orifice has diameter , calibrated discharge coefficient , and center below a large reservoir free surface. Both free surface and jet are at atmospheric pressure. Determine discharge.
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0 of 2 Steps CompletedProblem 2: Orifice Coefficients from Measured Jet Data
An orifice test gives theoretical jet velocity and measured vena-contracta velocity . The vena-contracta area is of the geometric orifice area. Determine , , and using the definitions in this topic.
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0 of 2 Steps CompletedProblem 3: Venturi Meter from Piezometric-Head Difference
A water Venturi has , , measured piezometric-head difference of water, and calibrated . Determine discharge.
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0 of 2 Steps CompletedProblem 4: Venturi Meter with a Mercury Manometer
A horizontal Venturi carries water. , , , and a differential mercury manometer connecting equal-elevation taps reads . Use . Determine discharge.
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0 of 2 Steps CompletedProblem 5: Orifice Meter in a Pipe
A orifice plate is installed in a water pipe. The compatible pressure-tap measurement gives and the calibrated coefficient is . Determine discharge with the incompressible orifice-meter relation.
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0 of 2 Steps CompletedProblem 6: Pitot-Static Local Velocity
A calibrated Pitot-static tube in water measures stagnation-minus-static pressure . Use probe coefficient and . Determine the local velocity.
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0 of 2 Steps CompletedProblem 7: Suppressed Rectangular Sharp-Crested Weir
A free, ventilated suppressed rectangular weir is wide with measured head . Use in the general rectangular-weir equation. Determine discharge.
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0 of 2 Steps CompletedProblem 8: Contracted Francis Weir
A free sharp-crested rectangular weir has physical crest length , two effective end contractions, and measured head . Use the stated SI Francis form . Determine effective length and discharge.
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0 of 2 Steps CompletedProblem 9: 90-Degree V-Notch Weir
A free, ventilated V-notch has head and an applicable coefficient . Determine discharge from the general triangular-weir relation.
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0 of 2 Steps CompletedProblem 10: Cipolletti Head for a Target Discharge
A free-flow Cipolletti weir has bottom crest length . Using the stated SI empirical relation , determine the head required for .
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0 of 2 Steps CompletedProblem 11: Velocity-Area Measurement in a Channel
A wide channel is divided into five equal subsections. Representative depths are , , , , and ; corresponding representative mean velocities are , , , , and . Estimate discharge with the midsection-style area summation.