Temperature at Outside Surface of Tube given Heat Transfer Solution

STEP 0: Pre-Calculation Summary
Formula Used
Outside Surface Temperature = ((Heat Transfer*Tube Thickness)/(Thermal Conductivity*Surface Area))+Inside Surface temperature
T2 = ((q*x)/(k*SA))+T3
This formula uses 6 Variables
Variables Used
Outside Surface Temperature - (Measured in Kelvin) - Outside Surface Temperature is the Temperature at the outside surface of the tube.
Heat Transfer - (Measured in Watt) - Heat Transfer is the amount of heat that is transferred per unit of time in some material, usually measured in watts (joules per second).
Tube Thickness - (Measured in Meter) - Tube Thickness is the thickness of the tube defined by a gauge number.
Thermal Conductivity - (Measured in Watt per Meter per K) - Thermal Conductivity is rate of heat passes through specified material, expressed as amount of heat flows per unit time through a unit area with a temperature gradient of one degree per unit distance.
Surface Area - (Measured in Square Meter) - The Surface Area of a three-dimensional shape is the sum of all of the surface areas of each of the sides.
Inside Surface temperature - (Measured in Kelvin) - Inside Surface Temperature is the temperature at the inside surface of the tube.
STEP 1: Convert Input(s) to Base Unit
Heat Transfer: 7.54 Watt --> 7.54 Watt No Conversion Required
Tube Thickness: 11233 Millimeter --> 11.233 Meter (Check conversion ​here)
Thermal Conductivity: 10.18 Watt per Meter per K --> 10.18 Watt per Meter per K No Conversion Required
Surface Area: 1.04 Square Meter --> 1.04 Square Meter No Conversion Required
Inside Surface temperature: 302 Kelvin --> 302 Kelvin No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
T2 = ((q*x)/(k*SA))+T3 --> ((7.54*11.233)/(10.18*1.04))+302
Evaluating ... ...
T2 = 309.99992632613
STEP 3: Convert Result to Output's Unit
309.99992632613 Kelvin --> No Conversion Required
FINAL ANSWER
309.99992632613 309.9999 Kelvin <-- Outside Surface Temperature
(Calculation completed in 00.004 seconds)

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Temperature at Outside Surface of Tube given Heat Transfer Formula

​LaTeX ​Go
Outside Surface Temperature = ((Heat Transfer*Tube Thickness)/(Thermal Conductivity*Surface Area))+Inside Surface temperature
T2 = ((q*x)/(k*SA))+T3

What is heat and temperature?

The Heat is thermal energy transferred from a hotter system to a cooler system that are in contact. Temperature is a measure of the average kinetic energy of the is atoms or molecules in the system.

How to Calculate Temperature at Outside Surface of Tube given Heat Transfer?

Temperature at Outside Surface of Tube given Heat Transfer calculator uses Outside Surface Temperature = ((Heat Transfer*Tube Thickness)/(Thermal Conductivity*Surface Area))+Inside Surface temperature to calculate the Outside Surface Temperature, Temperature at Outside Surface of Tube given Heat Transfer formula is defined as a measure of the temperature at the outer surface of a tube, influenced by the heat transfer rate, thermal conductivity, and surface area, providing valuable insights into heat exchange processes in various engineering applications. Outside Surface Temperature is denoted by T2 symbol.

How to calculate Temperature at Outside Surface of Tube given Heat Transfer using this online calculator? To use this online calculator for Temperature at Outside Surface of Tube given Heat Transfer, enter Heat Transfer (q), Tube Thickness (x), Thermal Conductivity (k), Surface Area (SA) & Inside Surface temperature (T3) and hit the calculate button. Here is how the Temperature at Outside Surface of Tube given Heat Transfer calculation can be explained with given input values -> 302.4629 = ((7.54*11.233)/(10.18*1.04))+302.

FAQ

What is Temperature at Outside Surface of Tube given Heat Transfer?
Temperature at Outside Surface of Tube given Heat Transfer formula is defined as a measure of the temperature at the outer surface of a tube, influenced by the heat transfer rate, thermal conductivity, and surface area, providing valuable insights into heat exchange processes in various engineering applications and is represented as T2 = ((q*x)/(k*SA))+T3 or Outside Surface Temperature = ((Heat Transfer*Tube Thickness)/(Thermal Conductivity*Surface Area))+Inside Surface temperature. Heat Transfer is the amount of heat that is transferred per unit of time in some material, usually measured in watts (joules per second), Tube Thickness is the thickness of the tube defined by a gauge number, Thermal Conductivity is rate of heat passes through specified material, expressed as amount of heat flows per unit time through a unit area with a temperature gradient of one degree per unit distance, The Surface Area of a three-dimensional shape is the sum of all of the surface areas of each of the sides & Inside Surface Temperature is the temperature at the inside surface of the tube.
How to calculate Temperature at Outside Surface of Tube given Heat Transfer?
Temperature at Outside Surface of Tube given Heat Transfer formula is defined as a measure of the temperature at the outer surface of a tube, influenced by the heat transfer rate, thermal conductivity, and surface area, providing valuable insights into heat exchange processes in various engineering applications is calculated using Outside Surface Temperature = ((Heat Transfer*Tube Thickness)/(Thermal Conductivity*Surface Area))+Inside Surface temperature. To calculate Temperature at Outside Surface of Tube given Heat Transfer, you need Heat Transfer (q), Tube Thickness (x), Thermal Conductivity (k), Surface Area (SA) & Inside Surface temperature (T3). With our tool, you need to enter the respective value for Heat Transfer, Tube Thickness, Thermal Conductivity, Surface Area & Inside Surface temperature 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 Outside Surface Temperature?
In this formula, Outside Surface Temperature uses Heat Transfer, Tube Thickness, Thermal Conductivity, Surface Area & Inside Surface temperature. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Outside Surface Temperature = Vapour condensing film temperature-(Heat Transfer/(Coefficient of Heat Transfer*Area))
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