Given the parameters, compute Reynold's Number. (Encode your final answer in the blank provided) pVD R = d = 400 mm V = 3 m/s kg H = 0.40 N.s p = 900 m3 m2

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Applying the GRID METHOD
Reynold's number is used to determine
the type of flow pattern through a pipe.
It is defined by the equation where p
=density, µ = viscosity, V = velocity, D =
diameter of pipe.
Given the parameters, compute
Reynold's Number. (Encode your
final answer in the blank provided)
pVD
R =
%3D
d = 400 mm
V = 3 m/s
kg
H = 0.40
N.s
p = 900
%3D
m3
m2
Transcribed Image Text:Applying the GRID METHOD Reynold's number is used to determine the type of flow pattern through a pipe. It is defined by the equation where p =density, µ = viscosity, V = velocity, D = diameter of pipe. Given the parameters, compute Reynold's Number. (Encode your final answer in the blank provided) pVD R = %3D d = 400 mm V = 3 m/s kg H = 0.40 N.s p = 900 %3D m3 m2
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