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The Pressure Gradient refers to the rate of change of pressure in a particular direction indicating how quickly the pressure increases or decreases around a specific location. Check FAQs
dp|dr=4μR2
dp|dr - Pressure Gradient?μ - Dynamic Viscosity?R - Radius of pipe?

Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element Example

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With units
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Here is how the Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element equation looks like with Values.

Here is how the Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element equation looks like with Units.

Here is how the Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element equation looks like.

214.2407Edit=410.2Edit138Edit2
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Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element Solution

Follow our step by step solution on how to calculate Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element?

FIRST Step Consider the formula
dp|dr=4μR2
Next Step Substitute values of Variables
dp|dr=410.2P138mm2
Next Step Convert Units
dp|dr=41.02Pa*s0.138m2
Next Step Prepare to Evaluate
dp|dr=41.020.1382
Next Step Evaluate
dp|dr=214.240705734089N/m³
LAST Step Rounding Answer
dp|dr=214.2407N/m³

Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element Formula Elements

Variables
Pressure Gradient
The Pressure Gradient refers to the rate of change of pressure in a particular direction indicating how quickly the pressure increases or decreases around a specific location.
Symbol: dp|dr
Measurement: Pressure GradientUnit: N/m³
Note: Value should be greater than 0.
Dynamic Viscosity
The Dynamic Viscosity refers to the internal resistance of a fluid to flow when a force is applied.
Symbol: μ
Measurement: Dynamic ViscosityUnit: P
Note: Value should be greater than 0.
Radius of pipe
The Radius of Pipe refers to the distance from the center of the pipe to its inner wall.
Symbol: R
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other Formulas to find Pressure Gradient

​Go Pressure Gradient given Shear Stress at any Cylindrical Element
dp|dr=2𝜏dradial
​Go Pressure Gradient given Maximum Shear Stress at Cylindrical Element
dp|dr=2𝜏maxR
​Go Pressure Gradient given Velocity Gradient at Cylindrical Element
dp|dr=2μVGdradial
​Go Pressure Gradient given Discharge through Pipe
dp|dr=Q(π8μ)(R4)

Other formulas in Pressure Gradient category

​Go Pressure Gradient given Velocity at any point in Cylindrical Element
dp|dr=vFluid(14μ)((R2)-(dradial2))

How to Evaluate Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element?

Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element evaluator uses Pressure Gradient = (4*Dynamic Viscosity)/(Radius of pipe^2) to evaluate the Pressure Gradient, The Pressure Gradient given Maximum Velocity at axis of Cylindrical Element is defined as the variation of pressure with respect to the length of the pipe. Pressure Gradient is denoted by dp|dr symbol.

How to evaluate Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element using this online evaluator? To use this online evaluator for Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element, enter Dynamic Viscosity (μ) & Radius of pipe (R) and hit the calculate button.

FAQs on Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element

What is the formula to find Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element?
The formula of Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element is expressed as Pressure Gradient = (4*Dynamic Viscosity)/(Radius of pipe^2). Here is an example- 214.2407 = (4*1.02)/(0.138^2).
How to calculate Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element?
With Dynamic Viscosity (μ) & Radius of pipe (R) we can find Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element using the formula - Pressure Gradient = (4*Dynamic Viscosity)/(Radius of pipe^2).
What are the other ways to Calculate Pressure Gradient?
Here are the different ways to Calculate Pressure Gradient-
  • Pressure Gradient=2*Shear Stress/Radial DistanceOpenImg
  • Pressure Gradient=(2*Maximum Shear Stress on Shaft)/Radius of pipeOpenImg
  • Pressure Gradient=2*Dynamic Viscosity*Velocity Gradient/Radial DistanceOpenImg
Can the Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element be negative?
No, the Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element, measured in Pressure Gradient cannot be negative.
Which unit is used to measure Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element?
Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element is usually measured using the Newton per Cubic Meter[N/m³] for Pressure Gradient. Newton per Cubic Inch[N/m³], Kilonewton per Cubic Kilometer[N/m³], Newton per Cubic Kilometer[N/m³] are the few other units in which Pressure Gradient given Maximum Velocity at Axis of Cylindrical Element can be measured.
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