Thermal Conductivity of Transition Flow Formula

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The Transition Thermal Conductivity is the measure of heat transfer through a material during the transition phase in hypersonic flow over a flat plate. Check FAQs
kT=μTcPrT
kT - Transition Thermal Conductivity?μT - Eddy Viscosity?c - Specific Heat Capacity?PrT - Transient Prandtl Number?

Thermal Conductivity of Transition Flow Example

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With units
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Here is how the Thermal Conductivity of Transition Flow equation looks like with Values.

Here is how the Thermal Conductivity of Transition Flow equation looks like with Units.

Here is how the Thermal Conductivity of Transition Flow equation looks like.

112Edit=22.0328Edit0.122Edit2.4Edit
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Thermal Conductivity of Transition Flow Solution

Follow our step by step solution on how to calculate Thermal Conductivity of Transition Flow?

FIRST Step Consider the formula
kT=μTcPrT
Next Step Substitute values of Variables
kT=22.0328P0.122kJ/kg*K2.4
Next Step Convert Units
kT=2.2033Pa*s122J/(kg*K)2.4
Next Step Prepare to Evaluate
kT=2.20331222.4
Next Step Evaluate
kT=112.000015833333W/(m*K)
LAST Step Rounding Answer
kT=112W/(m*K)

Thermal Conductivity of Transition Flow Formula Elements

Variables
Transition Thermal Conductivity
The Transition Thermal Conductivity is the measure of heat transfer through a material during the transition phase in hypersonic flow over a flat plate.
Symbol: kT
Measurement: Thermal ConductivityUnit: W/(m*K)
Note: Value should be greater than 0.
Eddy Viscosity
The Eddy Viscosity is a measure of the turbulent momentum transfer in a fluid, influencing the flow characteristics around surfaces in hypersonic conditions.
Symbol: μT
Measurement: Dynamic ViscosityUnit: P
Note: Value should be greater than 0.
Specific Heat Capacity
The Specific Heat Capacity is the amount of heat energy required to raise the temperature of a unit mass of a substance by one degree Celsius.
Symbol: c
Measurement: Specific Heat CapacityUnit: kJ/kg*K
Note: Value can be positive or negative.
Transient Prandtl Number
The Transient Prandtl Number is a dimensionless quantity that characterizes the relationship between thermal and momentum diffusivity in transient heat transfer during hypersonic flow.
Symbol: PrT
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other formulas in Hypersonic Transition category

​Go Transition Reynolds Number
Ret=ρeuextμe
​Go Static Density at Transition Point
ρe=Retμeuext
​Go Static Velocity at Transition Point
ue=Retμeρext
​Go Location of Transition Point
xt=Retμeueρe

How to Evaluate Thermal Conductivity of Transition Flow?

Thermal Conductivity of Transition Flow evaluator uses Transition Thermal Conductivity = (Eddy Viscosity*Specific Heat Capacity)/Transient Prandtl Number to evaluate the Transition Thermal Conductivity, Thermal Conductivity of Transition Flow formula is defined as a measure of the ability of a fluid to conduct heat in a transitional flow regime, where the flow is neither fully laminar nor fully turbulent, and is commonly used in the context of flat plate viscous flow. Transition Thermal Conductivity is denoted by kT symbol.

How to evaluate Thermal Conductivity of Transition Flow using this online evaluator? To use this online evaluator for Thermal Conductivity of Transition Flow, enter Eddy Viscosity T), Specific Heat Capacity (c) & Transient Prandtl Number (PrT) and hit the calculate button.

FAQs on Thermal Conductivity of Transition Flow

What is the formula to find Thermal Conductivity of Transition Flow?
The formula of Thermal Conductivity of Transition Flow is expressed as Transition Thermal Conductivity = (Eddy Viscosity*Specific Heat Capacity)/Transient Prandtl Number. Here is an example- 1120 = (2.203279*122)/2.4.
How to calculate Thermal Conductivity of Transition Flow?
With Eddy Viscosity T), Specific Heat Capacity (c) & Transient Prandtl Number (PrT) we can find Thermal Conductivity of Transition Flow using the formula - Transition Thermal Conductivity = (Eddy Viscosity*Specific Heat Capacity)/Transient Prandtl Number.
Can the Thermal Conductivity of Transition Flow be negative?
No, the Thermal Conductivity of Transition Flow, measured in Thermal Conductivity cannot be negative.
Which unit is used to measure Thermal Conductivity of Transition Flow?
Thermal Conductivity of Transition Flow is usually measured using the Watt per Meter per K[W/(m*K)] for Thermal Conductivity. Kilowatt per Meter per K[W/(m*K)], Calorie (IT) per Second per Centimeter per °C[W/(m*K)], Kilocalorie (th) per Hour per Meter per °C[W/(m*K)] are the few other units in which Thermal Conductivity of Transition Flow can be measured.
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