Determine the total length of a wrought iron pipe (e = 0.000046) with a diameter of 1.5 in which will result in a pressure drop of 7 kPa due to fluid friction, for fluids flowing at a rate of 0.075 kg / s, a viscosity of 2 cP, and a density of 1000 kg / m3 (use a moody diagram ) a. Reynold number = Answer . b. Friction factor (f) = Answer . c. Pipe length = Answer
Determine the total length of a wrought iron pipe (e = 0.000046) with a diameter of 1.5 in which will result in a pressure drop of 7 kPa due to fluid friction, for fluids flowing at a rate of 0.075 kg / s, a viscosity of 2 cP, and a density of 1000 kg / m3 (use a moody diagram ) a. Reynold number = Answer . b. Friction factor (f) = Answer . c. Pipe length = Answer
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
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Determine the total length of a wrought iron pipe (e = 0.000046) with a diameter of 1.5 in which will result in a pressure drop of 7 kPa due to fluid friction, for fluids flowing at a rate of 0.075 kg / s, a viscosity of 2 cP, and a density of 1000 kg / m3 (use a moody diagram )
a. Reynold number = Answer
.
b. Friction factor (f) = Answer
.
c. Pipe length = Answer
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