Fx Copy
LaTeX Copy
The Nusselt Number is the ratio of convective to conductive heat transfer at a boundary in a fluid. Convection includes both advection and diffusion. Check FAQs
Nu=0.3+(0.62(Re0.5)(Pr0.333)(1+((0.4Pr)0.67))0.25)(1+(Re282000)0.625)0.8
Nu - Nusselt Number?Re - Reynolds Number?Pr - Prandtl Number?

Nusselt number for liquid metals and silicones Example

With values
With units
Only example

Here is how the Nusselt number for liquid metals and silicones equation looks like with Values.

Here is how the Nusselt number for liquid metals and silicones equation looks like with Units.

Here is how the Nusselt number for liquid metals and silicones equation looks like.

1.3811Edit=0.3+(0.62(5Edit0.5)(0.7Edit0.333)(1+((0.40.7Edit)0.67))0.25)(1+(5Edit282000)0.625)0.8
You are here -
HomeIcon Home » Category Physics » Category Mechanical » Category Heat and Mass Transfer » fx Nusselt number for liquid metals and silicones

Nusselt number for liquid metals and silicones Solution

Follow our step by step solution on how to calculate Nusselt number for liquid metals and silicones?

FIRST Step Consider the formula
Nu=0.3+(0.62(Re0.5)(Pr0.333)(1+((0.4Pr)0.67))0.25)(1+(Re282000)0.625)0.8
Next Step Substitute values of Variables
Nu=0.3+(0.62(50.5)(0.70.333)(1+((0.40.7)0.67))0.25)(1+(5282000)0.625)0.8
Next Step Prepare to Evaluate
Nu=0.3+(0.62(50.5)(0.70.333)(1+((0.40.7)0.67))0.25)(1+(5282000)0.625)0.8
Next Step Evaluate
Nu=1.38110252907204
LAST Step Rounding Answer
Nu=1.3811

Nusselt number for liquid metals and silicones Formula Elements

Variables
Nusselt Number
The Nusselt Number is the ratio of convective to conductive heat transfer at a boundary in a fluid. Convection includes both advection and diffusion.
Symbol: Nu
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Reynolds Number
The Reynolds number is the ratio of inertial forces to viscous forces within a fluid which is subjected to relative internal movement due to different fluid velocities.
Symbol: Re
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
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

​Go Nusselt Number based on Diameter
Nu=(0.35+0.56(Re0.52))Pr0.33
​Go Nusselt number for liquids and gases
Nu=(0.43+0.50(Re0.5))Pr0.38
​Go Nusselt number when property variation is larger due to temperature variation
Nu=0.25(Re0.6)(Pr0.38)(PfPrw)0.25
​Go Nusselt number given dynamic viscosity
Nu=(0.4(Re0.5)+0.06(Re0.67))(Pr0.4)(μμw)0.25

How to Evaluate Nusselt number for liquid metals and silicones?

Nusselt number for liquid metals and silicones evaluator uses Nusselt Number = 0.3+((0.62*(Reynolds Number^0.5)*(Prandtl Number^0.333))/(1+((0.4/Prandtl Number)^0.67))^0.25)*(1+(Reynolds Number/282000)^0.625)^0.8 to evaluate the Nusselt Number, Nusselt number for liquid metals and silicones formula is defined as a dimensionless quantity that characterizes convective heat transfer between a solid surface and a fluid, particularly in flow over cylinders, where it is used to predict heat transfer rates and optimize thermal performance in various engineering applications. Nusselt Number is denoted by Nu symbol.

How to evaluate Nusselt number for liquid metals and silicones using this online evaluator? To use this online evaluator for Nusselt number for liquid metals and silicones, enter Reynolds Number (Re) & Prandtl Number (Pr) and hit the calculate button.

FAQs on Nusselt number for liquid metals and silicones

What is the formula to find Nusselt number for liquid metals and silicones?
The formula of Nusselt number for liquid metals and silicones is expressed as Nusselt Number = 0.3+((0.62*(Reynolds Number^0.5)*(Prandtl Number^0.333))/(1+((0.4/Prandtl Number)^0.67))^0.25)*(1+(Reynolds Number/282000)^0.625)^0.8. Here is an example- 1.381103 = 0.3+((0.62*(5^0.5)*(0.7^0.333))/(1+((0.4/0.7)^0.67))^0.25)*(1+(5/282000)^0.625)^0.8.
How to calculate Nusselt number for liquid metals and silicones?
With Reynolds Number (Re) & Prandtl Number (Pr) we can find Nusselt number for liquid metals and silicones using the formula - Nusselt Number = 0.3+((0.62*(Reynolds Number^0.5)*(Prandtl Number^0.333))/(1+((0.4/Prandtl Number)^0.67))^0.25)*(1+(Reynolds Number/282000)^0.625)^0.8.
What are the other ways to Calculate Nusselt Number?
Here are the different ways to Calculate Nusselt Number-
  • Nusselt Number=(0.35+0.56*(Reynolds Number^0.52))*Prandtl Number^0.33OpenImg
  • Nusselt Number=(0.43+0.50*(Reynolds Number^0.5))*Prandtl Number^0.38OpenImg
  • Nusselt Number=0.25*(Reynolds Number^0.6)*(Prandtl Number^0.38)*(Prandtl Number at Film Temperature/Prandtl Number at Wall Temperature)^0.25OpenImg
Copied!