Total Cooling Load due to Equipment Solution

STEP 0: Pre-Calculation Summary
Formula Used
Total Cooling Load = Sensible Cooling Load*Latent Factor
QT = Qper hour*LF
This formula uses 3 Variables
Variables Used
Total Cooling Load - (Measured in Watt) - Total Cooling Load is heat transferred through the building envelope and heat generated by occupants, equipment, and lights.
Sensible Cooling Load - (Measured in Watt) - Sensible Cooling Load is the heat added or removed from conditioned space by means of roof, ceiling, floor or windows.
Latent Factor - The Latent Factor is approximated latent cooling load.
STEP 1: Convert Input(s) to Base Unit
Sensible Cooling Load: 8 Btu (th) per Hour --> 2.3429999999432 Watt (Check conversion here)
Latent Factor: 1.25 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
QT = Qper hour*LF --> 2.3429999999432*1.25
Evaluating ... ...
QT = 2.928749999929
STEP 3: Convert Result to Output's Unit
2.928749999929 Watt -->9.99999999999999 Btu (th) per Hour (Check conversion here)
FINAL ANSWER
9.99999999999999 10 Btu (th) per Hour <-- Total Cooling Load
(Calculation completed in 00.004 seconds)

Credits

Created by Rudrani Tidke
Cummins College of Engineering for Women (CCEW), Pune
Rudrani Tidke has created this Calculator and 100+ more calculators!
Verified by Kethavath Srinath
Osmania University (OU), Hyderabad
Kethavath Srinath has verified this Calculator and 1200+ more calculators!

12 Cooling Loads Calculators

Corrected Cooling Load Temperature Difference given Cooling Load Temperature Difference
Go Corrected cooling load Temperature difference = Cooling Load Temperature Difference+Latitude Month Correction+(78-Room Temperature)+(Average Outside Temperature-85)
Solar radiation cooling load for glass
Go Solar Radiation Cooling Load for Glass = Maximum Solar Heat Gain Factor*Area of Glass*Shading coefficient*Cooling Load Factor for Glass
Sensible Cooling load from ventilation air
Go Sensible cooling loads from ventilation air = 1.1*Air ventilation rate in Cubic foot per minute*Temperature change between Outdoor and Inside air
Cooling load for roof, wall or glass given Corrected Cooling Load Temperature Difference
Go Cooling load = Overall Heat Transfer Coefficient*Area of Roof*Corrected cooling load Temperature difference
Total heat removed from ventilation air
Go Total Heat removed from Ventilation Air = Sensible cooling loads from ventilation air+Latent cooling loads from ventilation air
Cooling load from lighting
Go Cooling Load from Lighting = 3.4*Lighting Capacity*Ballast Factor*Cooling Load Factor for Lighting
Sensible Cooling Load due to infiltrating air
Go Sensible Cooling Load = 1.1*Air Infiltration Rate into Room*Temperature change between Outdoor and Inside air
Average outside temperature on design day
Go Outside Temperature = Outside design dry Bulb Temperature-(Daily temperature range/2)
Air infiltration rate into room (CFM)
Go Air Infiltration Rate into Room = Number of air changes per hour*(Room Volume/60)
Sensible Cooling load due to Equipment
Go Sensible Cooling Load = Total Cooling Load/Latent Factor
Total Cooling Load due to Equipment
Go Total Cooling Load = Sensible Cooling Load*Latent Factor
Equipment Total Cooling Load
Go Total Cooling Load = Sensible Cooling Load*Latent Factor

Total Cooling Load due to Equipment Formula

Total Cooling Load = Sensible Cooling Load*Latent Factor
QT = Qper hour*LF

What is cooling load calculation?

Space Cooling Load – is the rate at which energy must be removed from a space to maintain a constant space air temperature. Space Heat Extraction Rate - the rate at which heat is removed from the conditioned space and is equal to the space cooling load if the room temperature remains constant.

How to Calculate Total Cooling Load due to Equipment?

Total Cooling Load due to Equipment calculator uses Total Cooling Load = Sensible Cooling Load*Latent Factor to calculate the Total Cooling Load, The Total Cooling Load due to Equipment formula is defined as the heat transferred through the building envelope (walls, roof, floor, windows, doors etc.) and heat generated by equipments. Total Cooling Load is denoted by QT symbol.

How to calculate Total Cooling Load due to Equipment using this online calculator? To use this online calculator for Total Cooling Load due to Equipment, enter Sensible Cooling Load (Qper hour) & Latent Factor (LF) and hit the calculate button. Here is how the Total Cooling Load due to Equipment calculation can be explained with given input values -> 34.14426 = 2.3429999999432*1.25.

FAQ

What is Total Cooling Load due to Equipment?
The Total Cooling Load due to Equipment formula is defined as the heat transferred through the building envelope (walls, roof, floor, windows, doors etc.) and heat generated by equipments and is represented as QT = Qper hour*LF or Total Cooling Load = Sensible Cooling Load*Latent Factor. Sensible Cooling Load is the heat added or removed from conditioned space by means of roof, ceiling, floor or windows & The Latent Factor is approximated latent cooling load.
How to calculate Total Cooling Load due to Equipment?
The Total Cooling Load due to Equipment formula is defined as the heat transferred through the building envelope (walls, roof, floor, windows, doors etc.) and heat generated by equipments is calculated using Total Cooling Load = Sensible Cooling Load*Latent Factor. To calculate Total Cooling Load due to Equipment, you need Sensible Cooling Load (Qper hour) & Latent Factor (LF). With our tool, you need to enter the respective value for Sensible Cooling Load & Latent Factor 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 Total Cooling Load?
In this formula, Total Cooling Load uses Sensible Cooling Load & Latent Factor. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Total Cooling Load = Sensible Cooling Load*Latent Factor
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!