Heat Loss Calculator

Work out heat loss in BTU and kW for any room or home. Enter design temperatures, insulation R-values, and infiltration to get furnace size and annual heating cost.

Unit System
Design Conditions
°F
°F
°F
%
Envelope Components (Conduction)
ft²
h·ft²·°F/BTU

ft²
h·ft²·°F/BTU

ft²
h·ft²·°F/BTU

ft²
h·ft²·°F/BTU

ft²
h·ft²·°F/BTU

ft
BTU/h·ft·°F
Infiltration & Ventilation
ACH
ft³
Cost Details
$
hours
$
$
$
Heat Loss Summary
Total Heat Loss: —
Indoor Design Temperature—
Outdoor Design Temperature—
Temperature Difference—
Conduction Heat Loss—
— Walls—
— Ceiling / Roof—
— Windows—
— Doors—
— Floor—
— Slab Perimeter—
Infiltration Heat Loss—
Total Heat Loss—
Total Heat Loss (kW)—
Safety Margin—
Design Heating Load—
Recommended Furnace Size—
Estimated Annual Heating Cost—
Equipment Cost—
Installation Labor—
Additional Cost—
Estimated Total Cost—
ComponentValueUnit

Enter details and calculate to see breakdown.

Powered by Techraxy

Creator & Reviewer

Faiq Ur Rahman

Founder & CEO, Techraxy

Faiq Ur Rahman is a web designer, digital product developer, and Founder of Techraxy, a growing platform of online calculators and utility tools. He specializes in building structured, user-friendly tools focused on finance, health, conversions, productivity, and everyday problem-solving. He is passionate about developing practical digital solutions that make complex tasks simpler for users worldwide.

Share:

Rate this Tool

User Ratings:

0
0 out of 5 stars (based on 0 reviews)
Excellent
Very good
Average
Poor
Terrible

ADVERTISEMENT

ADVERTISEMENT

Heat Loss Calculator: BTU, kW and Furnace Size

Calculate heat loss through walls, ceiling, windows, doors, and floor using design temperatures and R-values. Infiltration adds to the total. The tool returns BTU, kW, recommended furnace size, and annual heating cost in imperial or metric units.

Heat loss is the rate at which a building loses heat to the outside. It’s measured in BTU per hour or watts, and it depends on the temperature difference, the area and R-value of every surface, and how much air leaks through gaps. This heat loss calculator takes those inputs and returns the total load, plus a recommended furnace size and annual heating cost. Contractors use it to size equipment. Homeowners use it to check whether a quote makes sense. Enter design temperatures, wall and ceiling areas, R-values, window and door details, and infiltration.

 

How to Use the Heat Loss Calculator

  1. Pick the unit system: imperial (ft², °F, BTU) or metric (m², °C, W).

  2. Enter the indoor and outdoor design temperatures. The tool calculates the difference.

  3. Set a safety margin. Twenty percent is a common default.

  4. Type the net area and R-value for walls, ceiling, windows, doors, and floor.

  5. For slab-on-grade, add the perimeter and F-factor. Set both to zero if not applicable.

  6. Choose an infiltration method: air changes per hour (ACH), airflow rate (CFM), or none.

  7. Enter the conditioned volume if using ACH, or the airflow rate if using CFM.

  8. Pick a fuel type and cost, then add equipment, labor, and additional cost.

The Summary tab leads with total heat loss and recommended furnace size. Detailed Breakdown lists every component’s heat loss and U-value.

 

How the Heat Loss Calculator Formula Works

The calculator adds conduction losses through every envelope component to the infiltration loss. Conduction uses U-value, area, and temperature difference. Infiltration uses airflow and temperature difference.

Formula: Temperature difference (ΔT) = Indoor temp − Outdoor temp
Formula: U-value = 1 ÷ R-value
Formula: Conduction loss = U × Area × ΔT
Formula: Slab loss = Perimeter × F-factor × ΔT
Formula: Infiltration loss = 1.08 × CFM × ΔT
Formula: Total heat loss = Conduction + Infiltration
Formula: Design load = Total heat loss × (1 + Safety margin ÷ 100)
Formula: Recommended furnace size = Smallest standard size ≥ Design load

The tool converts R-values and F-factors if you work in metric. An R-value of 13 h·ft²·°F/BTU becomes about 2.29 m²·K/W. The 1.08 multiplier in the infiltration formula converts CFM and ΔT to BTU/h for standard air.

Standard furnace sizes run from 40,000 to 250,000 BTU/h. The tool picks the smallest one that meets the design load. It also estimates annual heating cost from the total heat loss, full-load hours, and fuel cost per million BTU.

 

Worked Example: A 2,000 ft² Home in a Cold Climate

Say you’re calculating heat loss for a 2,000 ft² home. Indoor design temperature is 70°F. Outdoor design temperature is 10°F. Safety margin is 20%. The envelope has 1,200 ft² of walls at R-13, 1,500 ft² of ceiling at R-30, 200 ft² of windows at R-2, 60 ft² of doors at R-3, and 1,500 ft² of floor at R-19. Slab perimeter is 180 ft with an F-factor of 0.6. Infiltration is 0.5 ACH with a volume of 16,000 ft³. Natural gas costs $12 per million BTU. Full-load hours are 1,800.

  • ΔT: 70 − 10 = 60°F

  • Walls: U = 1/13 = 0.0769. Q = 0.0769 × 1,200 × 60 = 5,538 BTU/h

  • Ceiling: U = 1/30 = 0.0333. Q = 0.0333 × 1,500 × 60 = 3,000 BTU/h

  • Windows: U = 1/2 = 0.5. Q = 0.5 × 200 × 60 = 6,000 BTU/h

  • Doors: U = 1/3 = 0.333. Q = 0.333 × 60 × 60 = 1,200 BTU/h

  • Floor: U = 1/19 = 0.0526. Q = 0.0526 × 1,500 × 60 = 4,737 BTU/h

  • Slab: Q = 180 × 0.6 × 60 = 6,480 BTU/h

  • Conduction total: 5,538 + 3,000 + 6,000 + 1,200 + 4,737 + 6,480 = 26,955 BTU/h

  • Infiltration: CFM = 16,000 × 0.5 / 60 = 133.3 CFM. Q = 1.08 × 133.3 × 60 = 8,640 BTU/h

  • Total heat loss: 26,955 + 8,640 = 35,595 BTU/h

  • Total in kW: 35,595 × 0.293071 / 1000 = 10.43 kW

  • Design load: 35,595 × 1.20 = 42,714 BTU/h

  • Recommended furnace: 50,000 BTU/h

  • Annual heating cost: 35,595 × 1,800 / 1,000,000 × $12 = $768.85

The 50,000 BTU furnace covers the 42,714 BTU design load. The windows and slab are the biggest single losses, which is typical for an older home with single-pane glass and an uninsulated slab edge.

Frequently Asked Questions

How do you calculate heat loss?

Add conduction losses from walls, ceilings, windows, doors, floors, and slab edges to infiltration loss. Conduction uses U-value × area × ΔT. Infiltration uses 1.08 × CFM × ΔT. The sum is total heat loss in BTU/h.

 

What is a good R-value for walls?

It depends on climate. In cold climates, R-20 or higher is common. Moderate climates often use R-13 to R-15. Older homes may have R-7 or less. Higher R-values reduce conduction loss but cost more to install.

 

How do you calculate infiltration heat loss?

Use 1.08 × CFM × ΔT. To find CFM from ACH, multiply volume by ACH and divide by 60. A 16,000 ft³ house at 0.5 ACH gives 133 CFM. At ΔT 60°F, that’s 8,640 BTU/h.

 

What size furnace for a 2,000 square foot house?

Depends on climate, insulation, and infiltration. This calculator returns a recommended size after you enter the details. A typical older home in a cold climate might need 50,000 to 80,000 BTU/h. A tight new home might need 40,000 or less.

 

Does infiltration or conduction lose more heat?

It varies. In older, leaky homes, infiltration can be 30 to 40 percent of total loss. In tight new construction, infiltration drops to 10 percent or less. Conduction through windows and walls usually dominates overall.

 

What design temperature should I use for heat loss?

Use local ASHRAE 99% design temperature for outdoor, and 70°F for indoor. Your building department can provide the design temperature. Don’t use record lows; they oversize equipment.

 

How do you convert R-value to U-value?

U-value is 1 divided by R-value. An R-13 wall has a U-value of 0.077. R-30 ceiling has U-0.033. The calculator does this automatically when you enter R-values.

 

Why does my heat loss calculation seem high?

Check the outdoor design temperature. A colder outdoor temperature raises ΔT and increases loss. Check window and door areas. Check infiltration. Those three inputs often drive the total.

 

Can I use this calculator for a single room?

Yes. Enter only the surfaces for that room, set the others to zero, and use the room’s volume for infiltration. The tool works for any scale, from one room to a whole house.

 

Is this calculator the same as Manual J?

No. Manual J is a detailed, room-by-room load calculation that factors in duct losses, internal gains, and solar gains. This calculator is a simplified heat loss estimate. Use it for planning and comparison, not for permit-level sizing.

Disclaimer

This heat loss calculator estimates total heat loss and recommended furnace size from the dimensions, R-values, design temperatures, and infiltration you enter. It is not a Manual J load calculation. Actual sizing depends on local climate data, duct design, solar gains, internal gains, and equipment efficiency. For any gas appliance installation, the work must be carried out by a licensed and registered contractor who will also perform or verify a full load calculation. Cost output is a planning figure and excludes permits, ductwork, electrical work, and taxes.

ADVERTISEMENT

ADVERTISEMENT