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Nusselt Number(x) is the ratio of convective to conductive heat transfer across a boundary. Check FAQs
Nux=0.0296(Rex0.8)(Pr0.33)
Nux - Nusselt Number(x)?Rex - Reynolds Number(x)?Pr - Prandtl Number?

Nusselt number at distance x from leading edge Example

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Here is how the Nusselt number at distance x from leading edge equation looks like with Values.

Here is how the Nusselt number at distance x from leading edge equation looks like with Units.

Here is how the Nusselt number at distance x from leading edge equation looks like.

0.1432Edit=0.0296(8.314Edit0.8)(0.7Edit0.33)
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Nusselt number at distance x from leading edge Solution

Follow our step by step solution on how to calculate Nusselt number at distance x from leading edge?

FIRST Step Consider the formula
Nux=0.0296(Rex0.8)(Pr0.33)
Next Step Substitute values of Variables
Nux=0.0296(8.3140.8)(0.70.33)
Next Step Prepare to Evaluate
Nux=0.0296(8.3140.8)(0.70.33)
Next Step Evaluate
Nux=0.143226071642097
LAST Step Rounding Answer
Nux=0.1432

Nusselt number at distance x from leading edge Formula Elements

Variables
Nusselt Number(x)
Nusselt Number(x) is the ratio of convective to conductive heat transfer across a boundary.
Symbol: Nux
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Reynolds Number(x)
Reynolds number(x) at a distance X from the leading edge.
Symbol: Rex
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Prandtl Number
The Prandtl number (Pr) or Prandtl group is a dimensionless number, named after the German physicist Ludwig Prandtl, defined as the ratio of momentum diffusivity to thermal diffusivity.
Symbol: Pr
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other Formulas to find Nusselt Number(x)

​Go Nusselt Number at Distance X from Leading Edge by Analogy
Nux=(Cfx2)RexPr1+12.8((Cfx2).5)((Pr0.68)-1)

Other formulas in Turbulent Flow category

​Go Hydrodynamic boundary layer thickness at X
𝛿hx=0.381xL(Re-0.2)
​Go Displacement thickness at X
𝛿dx=𝛿hx8
​Go Hydrodynamic boundary layer thickness given displacement thickness
𝛿hx=8𝛿dx
​Go Momentum thickness at X
θx=(772)𝛿hx

How to Evaluate Nusselt number at distance x from leading edge?

Nusselt number at distance x from leading edge evaluator uses Nusselt Number(x) = 0.0296*(Reynolds Number(x)^0.8)*(Prandtl Number^0.33) to evaluate the Nusselt Number(x), Nusselt number at distance x from leading edge formula is defined as a dimensionless value that characterizes the convective heat transfer between a fluid and a flat plate at a specific location, providing a measure of the heat transfer rate in the boundary layer. Nusselt Number(x) is denoted by Nux symbol.

How to evaluate Nusselt number at distance x from leading edge using this online evaluator? To use this online evaluator for Nusselt number at distance x from leading edge, enter Reynolds Number(x) (Rex) & Prandtl Number (Pr) and hit the calculate button.

FAQs on Nusselt number at distance x from leading edge

What is the formula to find Nusselt number at distance x from leading edge?
The formula of Nusselt number at distance x from leading edge is expressed as Nusselt Number(x) = 0.0296*(Reynolds Number(x)^0.8)*(Prandtl Number^0.33). Here is an example- 0.143226 = 0.0296*(8.314^0.8)*(0.7^0.33).
How to calculate Nusselt number at distance x from leading edge?
With Reynolds Number(x) (Rex) & Prandtl Number (Pr) we can find Nusselt number at distance x from leading edge using the formula - Nusselt Number(x) = 0.0296*(Reynolds Number(x)^0.8)*(Prandtl Number^0.33).
What are the other ways to Calculate Nusselt Number(x)?
Here are the different ways to Calculate Nusselt Number(x)-
  • Nusselt Number(x)=((Local Friction Coefficient/2)*Reynolds Number(x)*Prandtl Number)/(1+12.8*((Local Friction Coefficient/2)^.5)*((Prandtl Number^0.68)-1))OpenImg
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