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Heat and Mass Transfer
Fin Efficiency in Transverse Fin Heat Exchanger Formulas
Fin Efficiency is defined as the ratio of heat dissipation by the fin to the heat dissipation takes place if the whole surface area of the fin is at the base temperature. And is denoted by η.
Formulas to find Fin Efficiency in Transverse Fin Heat Exchanger
f
x
Fin efficiency given convection coefficient
Go
Transverse Fin Heat Exchanger formulas that make use of Fin Efficiency
f
x
Height of tube tank given convection coefficient
Go
f
x
Inner diameter of tube given convection coefficient
Go
f
x
Surface area of fin given convection coefficient
Go
f
x
Bare area over fin leaving fin base given convection coefficient
Go
f
x
Convection Coefficient based on Inside Area
Go
f
x
Effective convection coefficient on outside given convection coefficient
Go
List of variables in Transverse Fin Heat Exchanger formulas
f
x
Convection coefficient based on inside area
Go
f
x
Inner Diameter
Go
f
x
Height of Crack
Go
f
x
Effective convection coefficient on outside
Go
f
x
Bare Area
Go
f
x
Surface Area
Go
FAQ
What is the Fin Efficiency?
Fin Efficiency is defined as the ratio of heat dissipation by the fin to the heat dissipation takes place if the whole surface area of the fin is at the base temperature.
Can the Fin Efficiency be negative?
{YesorNo}, the Fin Efficiency, measured in {OutputVariableMeasurementName} {CanorCannot} be negative.
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