d) Venturi-type flowmeter shown in Figure 8 is used to obtain the flowrate of oil inside a conduit. The diameter of the venturi, a is one third of the pipe diameter, D. The pipe diameter D is 6 cm, pressure difference reading AP, is 25 kPa, discharge coefficient Ca, is 0.98, Bis the ratio of venturi diameter to pipe diameter and oil specific gravity, SG is 0.95. Calculate the volume flowrate of oil inside the conduit. 2(P,-P,) P(1– B*) Vventury AP oil D Figure 8

Elements Of Electromagnetics
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d) Venturi-type flowmeter shown in Figure 8 is used to obtain the flowrate of oil inside a
conduit. The diameter of the venturi, a is one third of the pipe diameter, D. The pipe
diameter D is 6 cm, pressure difference reading AP, is 25 kPa, discharge coefficient Ca,
is 0.98, ßis the ratio of venturi diameter to pipe diameter and oil specific gravity, SG
is 0.95. Calculate the volume flowrate of oil inside the conduit.
2(P, – P,)
Vvenkury =
ΔΡ
oil
Figure 8
< >
Transcribed Image Text:d) Venturi-type flowmeter shown in Figure 8 is used to obtain the flowrate of oil inside a conduit. The diameter of the venturi, a is one third of the pipe diameter, D. The pipe diameter D is 6 cm, pressure difference reading AP, is 25 kPa, discharge coefficient Ca, is 0.98, ßis the ratio of venturi diameter to pipe diameter and oil specific gravity, SG is 0.95. Calculate the volume flowrate of oil inside the conduit. 2(P, – P,) Vvenkury = ΔΡ oil Figure 8 < >
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