Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow Solution

STEP 0: Pre-Calculation Summary
Formula Used
Recovery Factor = Prandtl Number^(1/3)
r = Pr^(1/3)
This formula uses 2 Variables
Variables Used
Recovery Factor - Recovery Factor is a dimensionless number defined by the ratio of difference in enthalpies.
Prandtl Number - 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.
STEP 1: Convert Input(s) to Base Unit
Prandtl Number: 7.29 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
r = Pr^(1/3) --> 7.29^(1/3)
Evaluating ... ...
r = 1.9389912210287
STEP 3: Convert Result to Output's Unit
1.9389912210287 --> No Conversion Required
FINAL ANSWER
1.9389912210287 1.938991 <-- Recovery Factor
(Calculation completed in 00.004 seconds)

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Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow Formula

​LaTeX ​Go
Recovery Factor = Prandtl Number^(1/3)
r = Pr^(1/3)

What is Convection?

Convection is the process of heat transfer by the bulk movement of molecules within fluids such as gases and liquids. The initial heat transfer between the object and the fluid takes place through conduction, but the bulk heat transfer happens due to the motion of the fluid. Convection is the process of heat transfer in fluids by the actual motion of matter. It happens in liquids and gases. It may be natural or forced. It involves a bulk transfer of portions of the fluid.

What are the Types of Convection?

There are two types of convection, and they are: Natural convection: When convection takes place due to buoyant force as there is a difference in densities caused by the difference in temperatures it is known as natural convection. Examples of natural convection are oceanic winds. Forced convection: When external sources such as fans and pumps are used for creating induced convection, it is known as forced convection. Examples of forced convection are using water heaters or geysers for instant heating of water and using a fan on a hot summer day.

How to Calculate Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow?

Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow calculator uses Recovery Factor = Prandtl Number^(1/3) to calculate the Recovery Factor, The Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow formula is defined as the function of adiabatic Wall Temperature, static temperature of free steam and stagnation temperature. In the actual case of a boundary-layer flow problem, the fluid is not brought to rest reversibly because the viscous action is basically an irreversible process in a thermodynamic sense. In addition, not all the free-stream kinetic energy is converted to thermal energy— part is lost as heat, and part is dissipated in the form of viscous work. To take into account the irreversibilities in the boundary-layer flow system, a recovery factor is defined. Recovery Factor is denoted by r symbol.

How to calculate Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow using this online calculator? To use this online calculator for Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow, enter Prandtl Number (Pr) and hit the calculate button. Here is how the Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow calculation can be explained with given input values -> 1.938991 = 7.29^(1/3).

FAQ

What is Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow?
The Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow formula is defined as the function of adiabatic Wall Temperature, static temperature of free steam and stagnation temperature. In the actual case of a boundary-layer flow problem, the fluid is not brought to rest reversibly because the viscous action is basically an irreversible process in a thermodynamic sense. In addition, not all the free-stream kinetic energy is converted to thermal energy— part is lost as heat, and part is dissipated in the form of viscous work. To take into account the irreversibilities in the boundary-layer flow system, a recovery factor is defined and is represented as r = Pr^(1/3) or Recovery Factor = Prandtl Number^(1/3). 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.
How to calculate Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow?
The Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow formula is defined as the function of adiabatic Wall Temperature, static temperature of free steam and stagnation temperature. In the actual case of a boundary-layer flow problem, the fluid is not brought to rest reversibly because the viscous action is basically an irreversible process in a thermodynamic sense. In addition, not all the free-stream kinetic energy is converted to thermal energy— part is lost as heat, and part is dissipated in the form of viscous work. To take into account the irreversibilities in the boundary-layer flow system, a recovery factor is defined is calculated using Recovery Factor = Prandtl Number^(1/3). To calculate Recovery Factor for Gases with Prandtl Number near Unity under Turbulent Flow, you need Prandtl Number (Pr). With our tool, you need to enter the respective value for Prandtl Number and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Recovery Factor?
In this formula, Recovery Factor uses Prandtl Number. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Recovery Factor = ((Adiabatic Wall Temperature-Static Temperature of Free Stream)/(Stagnation Temperature-Static Temperature of Free Stream))
  • Recovery Factor = Prandtl Number^(1/2)
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