Heat Gain through Partition, Floor or Ceiling Solution

STEP 0: Pre-Calculation Summary
Formula Used
Heat Gain = Heat Transfer Coefficient for Interior Structure*Surface Area of Duct*Cooling Load Temperature Difference
Qgain = Ui*SADuct*CLTD
This formula uses 4 Variables
Variables Used
Heat Gain - (Measured in Watt) - Heat gain is the term given to a temperature rise within a space due to heat from the sun (solar radiation).
Heat Transfer Coefficient for Interior Structure - (Measured in Watt per Square Meter per Kelvin) - Heat Transfer Coefficient for Interior Structure is a measure of the overall ability of a series of conductive and convective barriers to transfer heat.
Surface Area of Duct - (Measured in Square Meter) - Surface area of duct is the sum of the areas of all faces of the duct.
Cooling Load Temperature Difference - (Measured in Kelvin) - Cooling Load Temperature Difference is an equivalent temperature difference used for calculating the instantaneous external cooling load across a wall or roof.
STEP 1: Convert Input(s) to Base Unit
Heat Transfer Coefficient for Interior Structure: 1.5 Btu (IT) per Hour per Square Foot per Fahrenheit --> 8.51739501160224 Watt per Square Meter per Kelvin (Check conversion ​here)
Surface Area of Duct: 120 Square Foot --> 11.1483648000892 Square Meter (Check conversion ​here)
Cooling Load Temperature Difference: 29 Fahrenheit --> 271.483327150345 Kelvin (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Qgain = Ui*SADuct*CLTD --> 8.51739501160224*11.1483648000892*271.483327150345
Evaluating ... ...
Qgain = 25778.7065878854
STEP 3: Convert Result to Output's Unit
25778.7065878854 Watt -->87960.5979967118 Btu (IT) per Hour (Check conversion ​here)
FINAL ANSWER
87960.5979967118 87960.6 Btu (IT) per Hour <-- Heat Gain
(Calculation completed in 00.004 seconds)

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Created by Rudrani Tidke
Cummins College of Engineering for Women (CCEW), Pune
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9 Heat Gain Calculators

Latent cooling load from ventilation air
​ Go Latent cooling load from ventilation air in BTU/hr = 0.68*Air ventilation rate in Cubic foot per minute*(Outside Humidity Ratio-Inside humidity ratio)
Duct Heat Gain
​ Go Duct Heat Gain = Overall Heat Transfer Coefficient*Surface Area of Duct*Temperature change between Outdoor and Inside air
Heat Gain through Partition, Floor or Ceiling
​ Go Heat Gain = Heat Transfer Coefficient for Interior Structure*Surface Area of Duct*Cooling Load Temperature Difference
Sensible Heat Gain per people using Sensible Heat Gain from people
​ Go Sensible Heat Gains per person = Sensible Heat Gain from people/(Number of people*Cooling Load Factor for people)
Sensible Heat Gain from people
​ Go Sensible Heat Gain from people = Sensible Heat Gains per person*Number of people*Cooling Load Factor for people
Sensible Cooling Load Heat Gain through Structure
​ Go Sensible Cooling Load = Overall Heat Transfer Coefficient*Surface Area*Cooling Load Temperature Difference
Latent Heat Gain per person using Latent Heat Gain from people
​ Go Latent heat gains per person = Latent Heat Gain/Number of people
Latent Heat Gain from people
​ Go Latent Heat Gain = Latent heat gains per person*Number of people
Cooling load Heat Gain through windows
​ Go Sensible Cooling Load = Area of Glass*Glass Load Factor

Heat Gain through Partition, Floor or Ceiling Formula

Heat Gain = Heat Transfer Coefficient for Interior Structure*Surface Area of Duct*Cooling Load Temperature Difference
Qgain = Ui*SADuct*CLTD

What causes heat gain?

Heat gain, also known as thermal or solar gain, occurs in several ways: Conduction, when heat travels through walls and ceilings. Radiation, when sunlight penetrates windows and skylights. Infiltration, where warm air and moisture penetrate through cracks in walls.

How to Calculate Heat Gain through Partition, Floor or Ceiling?

Heat Gain through Partition, Floor or Ceiling calculator uses Heat Gain = Heat Transfer Coefficient for Interior Structure*Surface Area of Duct*Cooling Load Temperature Difference to calculate the Heat Gain, The Heat Gain through Partition, Floor or Ceiling formula is defined as the term given to a temperature rise within a space due to heat from the sun (solar radiation), heat from surfaces (long-wave infrared radiation), heat originating from other sources within the space (such as heating appliances, ovens, people, mechanical systems, lights and computers) and so on. Heat Gain is denoted by Qgain symbol.

How to calculate Heat Gain through Partition, Floor or Ceiling using this online calculator? To use this online calculator for Heat Gain through Partition, Floor or Ceiling, enter Heat Transfer Coefficient for Interior Structure (Ui), Surface Area of Duct (SADuct) & Cooling Load Temperature Difference (CLTD) and hit the calculate button. Here is how the Heat Gain through Partition, Floor or Ceiling calculation can be explained with given input values -> 300134 = 8.51739501160224*11.1483648000892*271.483327150345.

FAQ

What is Heat Gain through Partition, Floor or Ceiling?
The Heat Gain through Partition, Floor or Ceiling formula is defined as the term given to a temperature rise within a space due to heat from the sun (solar radiation), heat from surfaces (long-wave infrared radiation), heat originating from other sources within the space (such as heating appliances, ovens, people, mechanical systems, lights and computers) and so on and is represented as Qgain = Ui*SADuct*CLTD or Heat Gain = Heat Transfer Coefficient for Interior Structure*Surface Area of Duct*Cooling Load Temperature Difference. Heat Transfer Coefficient for Interior Structure is a measure of the overall ability of a series of conductive and convective barriers to transfer heat, Surface area of duct is the sum of the areas of all faces of the duct & Cooling Load Temperature Difference is an equivalent temperature difference used for calculating the instantaneous external cooling load across a wall or roof.
How to calculate Heat Gain through Partition, Floor or Ceiling?
The Heat Gain through Partition, Floor or Ceiling formula is defined as the term given to a temperature rise within a space due to heat from the sun (solar radiation), heat from surfaces (long-wave infrared radiation), heat originating from other sources within the space (such as heating appliances, ovens, people, mechanical systems, lights and computers) and so on is calculated using Heat Gain = Heat Transfer Coefficient for Interior Structure*Surface Area of Duct*Cooling Load Temperature Difference. To calculate Heat Gain through Partition, Floor or Ceiling, you need Heat Transfer Coefficient for Interior Structure (Ui), Surface Area of Duct (SADuct) & Cooling Load Temperature Difference (CLTD). With our tool, you need to enter the respective value for Heat Transfer Coefficient for Interior Structure, Surface Area of Duct & Cooling Load Temperature Difference and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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