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Velocity Gradient in Steady Laminar Flow in Circular Pipes Formulas
The Velocity Gradient refers to the difference in velocity between the adjacent layers of the fluid. And is denoted by V
G
. Velocity Gradient is usually measured using the Meter per Second for Speed. Note that the value of Velocity Gradient is always positive.
Formulas to find Velocity Gradient in Steady Laminar Flow in Circular Pipes
f
x
Velocity Gradient given Pressure Gradient at Cylindrical Element
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f
x
Velocity Gradient given Piezometric Gradient with Shear Stress
Go
Steady Laminar Flow in Circular Pipes formulas that make use of Velocity Gradient
f
x
Distance of Element from Center Line given Velocity Gradient at Cylindrical Element
Go
f
x
Piezometric Gradient given Velocity Gradient with Shear Stress
Go
f
x
Specific Weight of Liquid given Velocity Gradient with Shear Stress
Go
f
x
Dynamic Viscosity given Velocity Gradient with Shear Stress
Go
f
x
Radius of Elemental Section of Pipe given Velocity Gradient with Shear Stress
Go
f
x
Dynamic Viscosity given Pressure Gradient at Cylindrical Element
Go
f
x
Pressure Gradient given Velocity Gradient at Cylindrical Element
Go
List of variables in Steady Laminar Flow in Circular Pipes formulas
f
x
Dynamic Viscosity
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f
x
Pressure Gradient
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f
x
Radial Distance
Go
f
x
Specific Weight of Liquid
Go
f
x
Piezometric Gradient
Go
FAQ
What is the Velocity Gradient?
The Velocity Gradient refers to the difference in velocity between the adjacent layers of the fluid. Velocity Gradient is usually measured using the Meter per Second for Speed. Note that the value of Velocity Gradient is always positive.
Can the Velocity Gradient be negative?
No, the Velocity Gradient, measured in Speed cannot be negative.
What unit is used to measure Velocity Gradient?
Velocity Gradient is usually measured using the Meter per Second[m/s] for Speed. Meter per Minute[m/s], Meter per Hour[m/s], Kilometer per Hour[m/s] are the few other units in which Velocity Gradient can be measured.
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