[With reference to the Bernoulli and Continuity equations, provide a theoretical analysis of how flowrate can be calculated for a level venturi tube. Label each equation in the theoretical analysis with a number. Explain the steps as per the start given below...] As applied to a pipeline, Bernoulli's equation can be stated as follows: P2 + Z1 = pg P1 + Z2 2g (1) pg 29 where the subscripts refer to stations 1 &2 respectively. In this case the elevation head is the same for both stations since the venturi tube is horizontal therefore the Z terms in the above equation can be omitted, giving:

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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3. Theoretical Analysis:
[With reference to the Bernoulli and Continuity equations, provide a theoretical analysis of
how flowrate can be calculated for a level venturi tube. Label each equation in the theoretical
analysis with a number. Explain the steps as per the start given below...]
As applied to a pipeline, Bernoulli's equation can be stated as follows:
P2
-++ Z1
P1
v?
+Z2
(1)
Pg
2g
Pg
2g
I.
where the subscripts refer to stations 1 &2 respectively.
In this case the elevation head is the same for both stations since the venturi tube is horizontal
therefore the Z terms in the above equation can be omitted, giving:
二
Transcribed Image Text:3. Theoretical Analysis: [With reference to the Bernoulli and Continuity equations, provide a theoretical analysis of how flowrate can be calculated for a level venturi tube. Label each equation in the theoretical analysis with a number. Explain the steps as per the start given below...] As applied to a pipeline, Bernoulli's equation can be stated as follows: P2 -++ Z1 P1 v? +Z2 (1) Pg 2g Pg 2g I. where the subscripts refer to stations 1 &2 respectively. In this case the elevation head is the same for both stations since the venturi tube is horizontal therefore the Z terms in the above equation can be omitted, giving: 二
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