1. Water flows at a rate of 65 Li/min in a steel pipe of 45 mm diameter, K = 0.045x10-3 m, H = 0.001 K/m.s. Determine the type of flow, the friction coefficient, and the head loss due to friction per meter length %3D %3D of the pipe using: (a) Moody chart and (b) using smooth pipe formula.

Elements Of Electromagnetics
7th Edition
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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1. Water flows at a rate of 65 Li/min in a steel pipe of 45 mm diameter,
K% D0.045x103 m, µ = 0.001 K/m.s. Determine the type of flow, the
friction coefficient, and the head loss due to friction per meter length
of the pipe using: (a) Moody chart and (b) using smooth pipe formula.
2. Determine the size of galvanized steel pipe needed to carry water
for a distance of 180 m at 85 Li/s with a head loss of 9.0 m. Take e =
0.15 mm.
Transcribed Image Text:1. Water flows at a rate of 65 Li/min in a steel pipe of 45 mm diameter, K% D0.045x103 m, µ = 0.001 K/m.s. Determine the type of flow, the friction coefficient, and the head loss due to friction per meter length of the pipe using: (a) Moody chart and (b) using smooth pipe formula. 2. Determine the size of galvanized steel pipe needed to carry water for a distance of 180 m at 85 Li/s with a head loss of 9.0 m. Take e = 0.15 mm.
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