Fx Copy
LaTeX Copy
Heat Transfer is the amount of heat that is transferred per unit of time in some material, usually measured in watts (joules per second). Check FAQs
q=hA(T1-T2)
q - Heat Transfer?h - Coefficient of Heat Transfer?A - Area?T1 - Vapour condensing film temperature?T2 - Outside Surface Temperature?

Heat Transfer takes place from vapour refrigerant to outside of tube Example

With values
With units
Only example

Here is how the Heat Transfer takes place from vapour refrigerant to outside of tube equation looks like with Values.

Here is how the Heat Transfer takes place from vapour refrigerant to outside of tube equation looks like with Units.

Here is how the Heat Transfer takes place from vapour refrigerant to outside of tube equation looks like.

-6600Edit=13.2Edit50Edit(300Edit-310Edit)
You are here -
HomeIcon Home » Category Physics » Category Mechanical » Category Refrigeration and Air Conditioning » fx Heat Transfer takes place from vapour refrigerant to outside of tube

Heat Transfer takes place from vapour refrigerant to outside of tube Solution

Follow our step by step solution on how to calculate Heat Transfer takes place from vapour refrigerant to outside of tube?

FIRST Step Consider the formula
q=hA(T1-T2)
Next Step Substitute values of Variables
q=13.2W/m²*K50(300K-310K)
Next Step Prepare to Evaluate
q=13.250(300-310)
LAST Step Evaluate
q=-6600W

Heat Transfer takes place from vapour refrigerant to outside of tube Formula Elements

Variables
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.
Coefficient of Heat Transfer
The Coefficient of Heat Transfer is the heat transferred per unit area per kelvin. Thus area is included in the equation as it represents the area over which the transfer of heat takes place.
Symbol: h
Measurement: Heat Transfer CoefficientUnit: W/m²*K
Note: Value can be positive or negative.
Area
The area is the amount of two-dimensional space taken up by an object.
Symbol: A
Measurement: AreaUnit:
Note: Value should be greater than 0.
Vapour condensing film temperature
The Vapour condensing film temperature is the temperature of refrigerant vapour condensing film.
Symbol: T1
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.
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.

Other Formulas to find Heat Transfer

​Go Heat Transfer in Condenser given Overall Heat Transfer Coefficient
q=USAΔT
​Go Heat Transfer in Condenser given Overall Thermal Resistance
q=ΔTRth
​Go Heat transfer takes place from outside surface to inside surface of tube
q=kSA(T2-T3)x

Other formulas in Heat Transfer category

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

How to Evaluate Heat Transfer takes place from vapour refrigerant to outside of tube?

Heat Transfer takes place from vapour refrigerant to outside of tube evaluator uses Heat Transfer = Coefficient of Heat Transfer*Area*(Vapour condensing film temperature-Outside Surface Temperature) to evaluate the Heat Transfer, Heat Transfer takes place from vapour refrigerant to outside of tube formula is defined as the rate of heat exchange between the refrigerant and the outer surface of the tube, which is a critical factor in refrigeration systems, where heat is transferred from the hot refrigerant vapour to the cooler surroundings. Heat Transfer is denoted by q symbol.

How to evaluate Heat Transfer takes place from vapour refrigerant to outside of tube using this online evaluator? To use this online evaluator for Heat Transfer takes place from vapour refrigerant to outside of tube, enter Coefficient of Heat Transfer (h), Area (A), Vapour condensing film temperature (T1) & Outside Surface Temperature (T2) and hit the calculate button.

FAQs on Heat Transfer takes place from vapour refrigerant to outside of tube

What is the formula to find Heat Transfer takes place from vapour refrigerant to outside of tube?
The formula of Heat Transfer takes place from vapour refrigerant to outside of tube is expressed as Heat Transfer = Coefficient of Heat Transfer*Area*(Vapour condensing film temperature-Outside Surface Temperature). Here is an example- -6600 = 13.2*50*(300-310).
How to calculate Heat Transfer takes place from vapour refrigerant to outside of tube?
With Coefficient of Heat Transfer (h), Area (A), Vapour condensing film temperature (T1) & Outside Surface Temperature (T2) we can find Heat Transfer takes place from vapour refrigerant to outside of tube using the formula - Heat Transfer = Coefficient of Heat Transfer*Area*(Vapour condensing film temperature-Outside Surface Temperature).
What are the other ways to Calculate Heat Transfer?
Here are the different ways to Calculate Heat Transfer-
  • Heat Transfer=Overall Heat Transfer Coefficient*Surface Area*Temperature DifferenceOpenImg
  • Heat Transfer=Temperature Difference/Thermal ResistanceOpenImg
  • Heat Transfer=(Thermal Conductivity*Surface Area*(Outside Surface Temperature-Inside Surface temperature))/Tube ThicknessOpenImg
Can the Heat Transfer takes place from vapour refrigerant to outside of tube be negative?
Yes, the Heat Transfer takes place from vapour refrigerant to outside of tube, measured in Power can be negative.
Which unit is used to measure Heat Transfer takes place from vapour refrigerant to outside of tube?
Heat Transfer takes place from vapour refrigerant to outside of tube is usually measured using the Watt[W] for Power. Kilowatt[W], Milliwatt[W], Microwatt[W] are the few other units in which Heat Transfer takes place from vapour refrigerant to outside of tube can be measured.
Copied!