What size furnace does a 3000 sq ft house in Hialeah, FL need?
| Furnace input rating to buy | 80,000BTU/hr |
|---|---|
| Heat actually delivered80,000 × 96% AFUE — the number that heats the house | 76,800BTU/hr |
| Calculated heat loss3,000 ft² × 21.4 BTU/ft² | 64,200BTU/hr |
| Winter design temperature99% design dry bulb, 2015–2024 — colder on about 4 days a year | 50°F |
| Design temperature difference70°F indoors against 50°F outdoors — this sets the whole calculation | 20°F |
| Heat loss per square foot9.4 + 0.60 × 20°F | 21.4BTU/ft² |
| Heating degree daysbase 65°F, annual average | 58°F-days |
| Nights at or below freezing | 0nights/yr |
| Gas used per heating seasonfrom measured household consumption, not from the sizing figure above | 12therms |
| Heating cost per yearat $1.42/therm, the national residential average | $18 |
| Oversize after rounding upwithin the normal step | 20% |
| Same house at a 35°F design day | 91,200BTU/hr |
| Same house at a −20°F design day2.09× spread for the identical building | 190,200BTU/hr |
Notes
- Hialeah designs to 50°F, and that single number drives everything above. Heat loss is very close to a straight line in the indoor–outdoor difference, so a 20°F design difference gives 21.4 BTU per square foot per hour. The same house needs 91 MBH on a 35°F design day and 190 MBH at −20°F — a factor of 2.09, which is why a national "40 BTU per square foot" figure is useless in both directions.
- Two BTU numbers, and the box shows the bigger one. A 80,000 BTU/hr furnace at 96% AFUE puts 76,800 BTU/hr into the house; the rest goes up the flue. condensing, the common high-efficiency tier. The mistake to avoid is keeping the old input rating when moving to a higher efficiency — swapping an 80% unit for a 96% unit at the same input adds 12,800 BTU/hr of delivered heat the house never asked for.
- Oversizing is the expensive mistake, not undersizing. An oversized furnace satisfies the thermostat in a few minutes, shuts off, and repeats — hard on the heat exchanger and the igniter, and it leaves the house with hot-then-cold swings and cold rooms at the ends of the duct runs. Undersizing costs comfort on the four coldest nights of the year; oversizing costs comfort on all of them.
- Fuel, roughly — and it does not come from the number above. 58 heating degree days on a 3,000 ft² house works out to about 12 therms a season, 18 dollars at the national average gas price. That figure is calibrated against what households actually burn, not scaled from the sizing rule of thumb — and the two disagree by a factor of about 3.8, because the sizing table is deliberately conservative. Going from 80% to 96% AFUE here saves roughly $4 a year against an installed price difference usually in the $1,000–2,000 range, so the payback is a real calculation and not an obvious yes.
- This is a heat loss estimate, not a Manual J. The real one counts window area and orientation, insulation R-values, measured air leakage, ceiling height, duct location and how many people live in the house. A tight new build in Hialeah can come in a third below this figure; a 1950s house with original windows and no wall insulation can come in a third above. Ask for the Manual J before signing — it costs a few hundred dollars on a $5,000–10,000 installation, and it is the only thing that turns the number above into a specification.
- Where the design temperature comes from. It is the 1st percentile of daily low temperatures at Miami International Airport, 9 km from downtown Hialeah, over 2015–2024 — the same kind of airport station ASHRAE measures at. The percentile was calibrated against eight airports with published ASHRAE values and reproduces them to within 2.2°F on average. Expect a degree or two of difference from a printed table; that is far smaller than the uncertainty in the house itself.
The short answer
A 3000 square foot house in Hialeah, FL needs a furnace rated about 80,000 BTU per hour of input at 96% AFUE, which delivers 76,800 BTU/hr into the house.
Where that number comes from
Hialeah, FL designs to 50°F — the temperature it drops below on roughly four nights a year. Against 70°F indoors that is a 20°F difference, and heat loss is very nearly a straight line in that difference: 21.4 BTU per square foot per hour here.
This is the reason a single national "40 BTU per square foot" figure is wrong in both directions. The same house wants 91,200 BTU/hr where the design night is 35°F and 190,200 BTU/hr where it is −20°F.
Input is not output
The rating on the box is fuel burned, not heat delivered. At 96% AFUE a 80,000 BTU/hr furnace puts 76,800 BTU/hr into the rooms. Keeping the old input rating when moving to a higher efficiency is the most common way a replacement ends up oversized.
What it costs to run
Hialeah, FL runs 58 heating degree days a year. This house at 96% AFUE burns roughly 12 therms a season — about $18 at the national average gas price.
Before you buy
Ask for the Manual J. A few hundred dollars on a five-figure installation, and it is the only thing that turns the estimate above into a specification.
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Read more
- Water Dripping From the Furnace Vent — Normal on One Type, a Fault on the OtherThe same drip is expected on one furnace and dangerous on another. Which one you have is decided by the vent material, and you can see it from across the room.
- Gas Bill Went Up After a New Furnace — Five Reasons That Are Not the FurnaceCompare therms against degree days, not dollars against last year. Half of these complaints disappear the moment the weather is normalised out.
- New High-Efficiency Furnace Short Cycles — Usually the SizingThe upgrade from 80% to 96% adds a fifth more heat from the same size box. Keep the input the same and you have just oversized the house by 20%.