Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube Formula

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The Surface Area of a three-dimensional shape is the sum of all of the surface areas of each of the sides. Check FAQs
SA=qxk(T2-T3)
SA - Surface Area?q - Heat Transfer?x - Tube Thickness?k - Thermal Conductivity?T2 - Outside Surface Temperature?T3 - Inside Surface temperature?

Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube Example

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Here is how the Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube equation looks like with Values.

Here is how the Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube equation looks like with Units.

Here is how the Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube equation looks like.

1.04Edit=7.54Edit11233Edit10.18Edit(310Edit-302Edit)
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Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube Solution

Follow our step by step solution on how to calculate Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube?

FIRST Step Consider the formula
SA=qxk(T2-T3)
Next Step Substitute values of Variables
SA=7.54W11233mm10.18W/(m*K)(310K-302K)
Next Step Convert Units
SA=7.54W11.233m10.18W/(m*K)(310K-302K)
Next Step Prepare to Evaluate
SA=7.5411.23310.18(310-302)
Next Step Evaluate
SA=1.03999042239686
LAST Step Rounding Answer
SA=1.04

Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube Formula Elements

Variables
Surface Area
The Surface Area of a three-dimensional shape is the sum of all of the surface areas of each of the sides.
Symbol: SA
Measurement: AreaUnit:
Note: Value can be positive or negative.
Heat Transfer
Heat Transfer is the amount of heat that is transferred per unit of time in some material, usually measured in watts (joules per second).
Symbol: q
Measurement: PowerUnit: W
Note: Value can be positive or negative.
Tube Thickness
Tube Thickness is the thickness of the tube defined by a gauge number.
Symbol: x
Measurement: LengthUnit: mm
Note: Value can be positive or negative.
Thermal Conductivity
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.
Symbol: k
Measurement: Thermal ConductivityUnit: W/(m*K)
Note: Value should be greater than 0.
Outside Surface Temperature
Outside Surface Temperature is the Temperature at the outside surface of the tube.
Symbol: T2
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.
Inside Surface temperature
Inside Surface Temperature is the temperature at the inside surface of the tube.
Symbol: T3
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.

Other formulas in Heat Transfer category

​Go Heat Rejection Factor
HRF=RE+WRE
​Go Heat Rejection Factor given COP
HRF=1+(1COPr)
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QC=RE+W
​Go Refrigeration Capacity given Load on Condenser
RE=QC-W

How to Evaluate Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube?

Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube evaluator uses Surface Area = (Heat Transfer*Tube Thickness)/(Thermal Conductivity*(Outside Surface Temperature-Inside Surface temperature)) to evaluate the Surface Area, Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube formula is defined as the total area of the tube where heat transfer occurs from the outer surface to the inner surface, playing a crucial role in heat exchanger design and performance analysis. Surface Area is denoted by SA symbol.

How to evaluate Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube using this online evaluator? To use this online evaluator for Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube, enter Heat Transfer (q), Tube Thickness (x), Thermal Conductivity (k), Outside Surface Temperature (T2) & Inside Surface temperature (T3) and hit the calculate button.

FAQs on Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube

What is the formula to find Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube?
The formula of Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube is expressed as Surface Area = (Heat Transfer*Tube Thickness)/(Thermal Conductivity*(Outside Surface Temperature-Inside Surface temperature)). Here is an example- 0.060179 = (7.54*11.233)/(10.18*(310-302)).
How to calculate Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube?
With Heat Transfer (q), Tube Thickness (x), Thermal Conductivity (k), Outside Surface Temperature (T2) & Inside Surface temperature (T3) we can find Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube using the formula - Surface Area = (Heat Transfer*Tube Thickness)/(Thermal Conductivity*(Outside Surface Temperature-Inside Surface temperature)).
Can the Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube be negative?
Yes, the Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube, measured in Area can be negative.
Which unit is used to measure Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube?
Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube is usually measured using the Square Meter[m²] for Area. Square Kilometer[m²], Square Centimeter[m²], Square Millimeter[m²] are the few other units in which Mean Surface area of Tube when Heat transfer takes place from outside to inside surface of tube can be measured.
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