1. A fluid is having viscosity of 0.4 Ns/m² and relative density of 900 Kg/m² through a pipe of 25 mm with a velocity of 3 m. Calculate the Reynolds number

Elements Of Electromagnetics
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HEAT TRANSFER

1.
A fluid is having viscosity of 0.4 Ns/m² and relative density of 900 Kg/m through a pipe of 25 mm with
a velocity of 3 m. Calculate the Reynolds number
A fluid passes passes through a pipe with the following condition
Fluid:
Kinematic Viscosity
= 1.61 x 10-4 m*
Density
= 2 ko/ma
Specific Heat
= 30 000 '/kg K
Pipe:
Inner Diameter
= 50 mm
Outer Diameter
= 60mm
Length
= 11 m
Thermal conductivity = 17 "/m K
w
= 99
m2-K
Heat Transfer coefficient of water
Compute for Prandlt and Nusselt Number
2.
Transcribed Image Text:1. A fluid is having viscosity of 0.4 Ns/m² and relative density of 900 Kg/m through a pipe of 25 mm with a velocity of 3 m. Calculate the Reynolds number A fluid passes passes through a pipe with the following condition Fluid: Kinematic Viscosity = 1.61 x 10-4 m* Density = 2 ko/ma Specific Heat = 30 000 '/kg K Pipe: Inner Diameter = 50 mm Outer Diameter = 60mm Length = 11 m Thermal conductivity = 17 "/m K w = 99 m2-K Heat Transfer coefficient of water Compute for Prandlt and Nusselt Number 2.
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