Measurement Of Flow Rate Through Pipe
Flow rate through a pipe is usually measured by providing a coaxial area contraction within the pipe and by recording the pressure drop across the contraction. Therefore the determination of the flow rate from the measurement of pressure drop depends on the straight forward application of Bernoulli’s equation.
Three different flow meters operate on this principle.
Venturimeter
Construction: A venturimeter is essentially a short pipe (Fig. 15.1) consisting of two conical parts with a short portion of uniform cross-section in between. This short portion has the minimum area and is known as the throat. The two conical portions have the same base diameter, but one is having a shorter length with a larger cone angle while the other is having a larger length with a smaller cone angle.
Fig 15.1 A Venturimeter
Working:
(15.1)
(15.2)
where ρ is the density of fluid flowing through the venturimeter.
where are the piezometric pressure heads at sec. 1 and sec. 2 respectively, and are defined as
Hence, the volume flow rate through the pipe is given by
(15.6)
Venturimeter... contd from previous slide
Orificemeter
Construction: An orificemeter provides a simpler and cheaper arrangement for the measurement of fow through a pipe. An orificemeter is essentially a thin circular plate with a sharp edged concentric circular hole in it.
Working:
Correction in Velocity
Hence,
(15.13)
where '∆h' is the difference in liquid levels in the manometer and ρm is the density of the manometric liquid.
Volumetric flow rate
(15.14)
The value of C depends upon the ratio of orifice to duct area, and the Reynolds number of flow.
Flow Nozzle
56 videos|104 docs|75 tests
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1. What is flow rate and how is it measured in a pipe? |
2. What factors affect the flow rate through a pipe? |
3. How does the pipe diameter impact the flow rate? |
4. Can flow rate be calculated using the Bernoulli's equation? |
5. How can the flow rate through a pipe be increased? |
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