Furnace Size Calculator

Furnace Size Calculator

Estimate home heating output BTU, furnace input BTU by AFUE, airflow CFM, and the sizing factors that change load by climate, ceiling height, insulation, and windows.

🏠Home and zone presets

📏Furnace sizing inputs

Metric entries are converted internally for BTU formulas.
Use finished heated area, not garage or unheated storage.
Choose the closest winter design load band for the home.
The calculator uses 8 ft as the baseline height.
Air sealing and attic insulation can change the load noticeably.
Large glass areas and wind exposure increase output need.
Input BTU = required output BTU divided by AFUE.
CFM estimate = output BTU/hr / (1.08 x temp rise).

Furnace sizing result

Required output 0 BTU/hr delivered heat
Furnace input 0 BTU/hr at selected AFUE
Airflow estimate 0 CFM through supply air
Adjusted intensity 0 BTU/hr per ft²
Calculation breakdown

Formula factors used

BTU/ft²Base climate load
H / 8Ceiling height factor
BTU / AFUEInput BTU formula
BTU / 1.08RCFM airflow rule

📊Furnace sizing reference tables

Climate BTU per square foot ranges
Climate selectionCalculator valueTypical rangeBest match
Mild25 BTU/ft²25 to 30 BTU/ft²Short, mild heating season
Warm mixed30 BTU/ft²30 to 35 BTU/ft²Light winter load with occasional cold snaps
Average40 BTU/ft²35 to 40 BTU/ft²Balanced heating season and typical construction
Cool45 BTU/ft²40 to 45 BTU/ft²Cool winter climate or exposed site
Cold50 BTU/ft²45 to 50 BTU/ft²Snow climate or longer heating season
Very cold60 BTU/ft²55 to 60 BTU/ft²Very low winter design temperatures
Adjustment factor guide
FactorLow loadNormal loadHigh load
Ceiling height7.5 ft = x0.948 ft = x1.0010 ft = x1.25
InsulationExcellent = x0.85Average = x1.00Poor = x1.28
WindowsSheltered = x0.92Typical = x1.00Glass-heavy = x1.30
Area unit1 m² = 10.764 ft²1 ft² = 0.0929 m²Use only heated area
Output BTU versus input BTU by AFUE
Required output80% AFUE input90% AFUE input96% AFUE input
40,000 BTU/hr50,000 BTU/hr44,444 BTU/hr41,667 BTU/hr
60,000 BTU/hr75,000 BTU/hr66,667 BTU/hr62,500 BTU/hr
80,000 BTU/hr100,000 BTU/hr88,889 BTU/hr83,333 BTU/hr
100,000 BTU/hr125,000 BTU/hr111,111 BTU/hr104,167 BTU/hr
CFM airflow estimates by temperature rise
Output BTU/hr40 F rise50 F rise60 F rise
40,000926 CFM741 CFM617 CFM
60,0001,389 CFM1,111 CFM926 CFM
80,0001,852 CFM1,481 CFM1,235 CFM
100,0002,315 CFM1,852 CFM1,543 CFM

💡Sizing tips

Use this as a planning estimate. A room-by-room Manual J load check is still the better final sizing method for new equipment, major envelope changes, or uneven comfort between zones.
Do not size from area alone. The same 1,600 ft² home can need very different output if it has tall ceilings, poor insulation, heavy glass, or a colder design climate.
Compare output BTU, not only input BTU. A high-AFUE furnace can deliver similar heat with lower input BTU because more of the fuel energy becomes useful heat.
Airflow matters after BTU sizing. If the CFM estimate is far above what ducts can carry quietly, the better answer may be load reduction or duct review before choosing a larger furnace.

When it comes to sizing a furnace, there are some variables that has to be understood to size right, and you can’t just go by what is printed on the box. Just because a furnace is bigger doesn’t make it any more efficient.

An oversize furnace will cause the system to short-cycle. It blows out hot air for a short period of time and then turns off and starts over again. Your energy bill goes up and air becomes dry and stuffy. Because the system isn’t running long enough, it can’t dehumidify area well, causing the temperature to swing.

How to Choose the Right Furnace Size

Your first variable is the size of the space you want to heat (the heated floor area). Next, it factors in your climate zone; a house in Minnesota will have a greater heating load then an identical home in Florida. It includes ceiling height, too. More floor space mean more air volume to heat. A standard 8-foot ceiling is used as the default; double-height spaces and vaulted rooms greatly enlarge the volume. The calculator takes this into account; and prevents you from underestimating the load.

Another key ingredient is quality of insulation, and whether house is sealed up properely to hold the heat in. If you have an old house with no insulation in the attic, drafty windows, etc., it will lose heat rapidly once the furnace shuts down. To make up for this, you’ll need more output because all that heat are leaking out through those gaps.

You rated your house’s envelope truthfully in the tool. For example, if you have gaps in your siding or single-pane window, you need higher output. The point isn’t necessarily what kind of heat you’re producing from the furnace; it’s how much of that heat are staying put.

You may have seen efficiency ratings called AFUE, which can be confusing. A high-efficiency furnace with an AFUE of 96 percent will convert nearly all gas it burns into useful heat. Because the older 80 percent unit wastes some energy going up the flue, the calculator factors in your unit’s efficiency when determining how many BTUs is needed.

What you should know is that the input is what the utility bills you for; the output warms your house. And this matters to your wallet, because a highly efficient unit delivers same level of comfort using less fuel. That’s why the reference table show how much less fuel it takes for such a unit to provide the same comfort.

Heat doesn’t magically appear; air carries it. So airflow is part of the equation, too. A big variable is how much heat need to be distributed (CFM stands for cubic feet per minute). Another variable is what size of ducts is required to deliver that heat without making the noise too loud. Pushing more air into under-sized ducts will cause pressure issues, which can be solved with better ducts. Or sometimes better sealing, but not necessarily a larger furnace.

More isn’t always better, it typicaly just covers up a leaky building shell. The number in this calculator is a planning estimate and you can get a realistic range for your own situation. Go with those numbers to your contractor so he/she would of know what to discuss with you and don’t just go out and buy the lowest priced unit. Make sure the contractor confirms the load calculation. If they just guess or fail to provide any details other than square footage, ask them to reconsider.

The right size is good for your home’s comfort, your energy bill, and also the life of the equipment. You want one that operate in long, steady cycles to keep your home comfortable.

Furnace Size Calculator

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