Reynolds Analogy for Stanton Number in Finite Difference Method Formula

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The Stanton Number is a dimensionless number that measures the ratio of heat transferred into a fluid to the thermal capacity of the fluid. Check FAQs
St=cf2s
St - Stanton Number?cf - Skin Friction Coefficient?s - Reynolds Analogy Factor?

Reynolds Analogy for Stanton Number in Finite Difference Method Example

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Here is how the Reynolds Analogy for Stanton Number in Finite Difference Method equation looks like with Values.

Here is how the Reynolds Analogy for Stanton Number in Finite Difference Method equation looks like with Units.

Here is how the Reynolds Analogy for Stanton Number in Finite Difference Method equation looks like.

0.48Edit=0.72Edit20.75Edit
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Reynolds Analogy for Stanton Number in Finite Difference Method Solution

Follow our step by step solution on how to calculate Reynolds Analogy for Stanton Number in Finite Difference Method?

FIRST Step Consider the formula
St=cf2s
Next Step Substitute values of Variables
St=0.7220.75
Next Step Prepare to Evaluate
St=0.7220.75
LAST Step Evaluate
St=0.48

Reynolds Analogy for Stanton Number in Finite Difference Method Formula Elements

Variables
Stanton Number
The Stanton Number is a dimensionless number that measures the ratio of heat transferred into a fluid to the thermal capacity of the fluid.
Symbol: St
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Skin Friction Coefficient
Skin friction coefficient is an important dimensionless parameter in boundary-layer flows. It specifies the fraction of the local dynamic pressure.
Symbol: cf
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Reynolds Analogy Factor
Reynolds analogy Factor is popularly known to relate to turbulent momentum and heat transfer. The main assumption is that heat flux q/A in a turbulent system is analogous to momentum flux τ.
Symbol: s
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other formulas in Laminar Boundary Layer at Stagnation point on Blunt body category

​Go Newtonian Pressure Distribution over Surface using Cosine Angle
Cp=2(cos(Φ))2
​Go Stagnation Pressure
p'=2Pdynamic(cos(Φ))2+p
​Go Newtonian Dynamic Pressure
Pdynamic=0.5(p'-p)
​Go Nusselt Number for Stagnation Point on Blunt Body
Nu=Nus(0.7(cos(Φ))1.5+0.3)

How to Evaluate Reynolds Analogy for Stanton Number in Finite Difference Method?

Reynolds Analogy for Stanton Number in Finite Difference Method evaluator uses Stanton Number = Skin Friction Coefficient/(2*Reynolds Analogy Factor) to evaluate the Stanton Number, The Reynolds analogy for Stanton number in finite difference method formula is defined as the ratio of overall skin friction coefficient to double the Reynolds analogy factor. Stanton Number is denoted by St symbol.

How to evaluate Reynolds Analogy for Stanton Number in Finite Difference Method using this online evaluator? To use this online evaluator for Reynolds Analogy for Stanton Number in Finite Difference Method, enter Skin Friction Coefficient (cf) & Reynolds Analogy Factor (s) and hit the calculate button.

FAQs on Reynolds Analogy for Stanton Number in Finite Difference Method

What is the formula to find Reynolds Analogy for Stanton Number in Finite Difference Method?
The formula of Reynolds Analogy for Stanton Number in Finite Difference Method is expressed as Stanton Number = Skin Friction Coefficient/(2*Reynolds Analogy Factor). Here is an example- 0.48 = 0.72/(2*0.75).
How to calculate Reynolds Analogy for Stanton Number in Finite Difference Method?
With Skin Friction Coefficient (cf) & Reynolds Analogy Factor (s) we can find Reynolds Analogy for Stanton Number in Finite Difference Method using the formula - Stanton Number = Skin Friction Coefficient/(2*Reynolds Analogy Factor).
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