Compare your current heating bill with a heat pump. Annual savings, payback period, 10 and 15-year projections - with rebate and CO2 reduction included.
You spend $3000 a year on heating - how much would a heat pump save?
Compare your current heating bill with a heat pump. Annual savings, payback period, 10 and 15-year projections - with rebate and CO2 reduction included.
If your annual heating bill is $3000, a heat pump with COP 3.0-4.5 could cut that cost by 40-70% depending on your current fuel type. The biggest savings come from replacing oil, propane or electric baseboard heating. Natural gas users see smaller gains because gas is already cheap per kWh. Enter your specific COP, electricity rate and installation cost below to see exactly how many years it takes for a heat pump to pay for itself when your starting point is $3000 per year.
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Your heating bill before and after a heat pump
Enter your current annual heating cost, the heat pump's COP, your electricity rate and the installation price. The calculator shows your annual savings, payback period with any rebate, and net savings over 10, 15 and 20 years. A side-by-side comparison table covers seven fuel types so you can see exactly where a heat pump sits in the ranking.
How to use - step by step
- Current heating source - select your primary fuel. If you use two sources, pick the one with the higher annual cost.
- Annual heating cost - total spent on heating over the last 12 months including hot water. Sum all fuel bills.
- Heated area - living space in square feet. Do not count unheated garage or basement.
- COP / SCOP - seasonal efficiency of the heat pump. Air-source typically 2.8-4.0, ground-source 3.8-5.5.
- Electricity price - your rate per kWh. US average is about $0.16.
- Installation cost - total price including unit, labor, ductwork and tank. Air-source: $12,000-$25,000.
- Rebate - federal IRA credit (30%, up to $2,000/year), state rebates, utility incentives.
- Read results - annual savings, payback, long-term net gain, fuel comparison and CO2 reduction.
Before and after - what changes
Before (gas furnace)
- Annual cost: $2,400
- Cost per kWh of heat: $0.04
- CO2: 12,000 kg/year
- Over 15 years: $36,000
After (heat pump, COP 3.5)
- Annual cost: $2,743
- Cost per kWh of heat: $0.046
- CO2: 5,040 kg/year
- Over 15 years: $41,143
Wait - in this example gas is actually cheaper than a heat pump at $0.16/kWh electricity? Yes. Gas at $0.04/kWh is hard to beat even with COP 3.5. The savings depend heavily on your fuel type. Oil at $0.07/kWh or propane at $0.10/kWh? The pump wins easily. The calculator runs the comparison for all seven sources at once.
Cost per kWh of delivered heat by fuel type
| Heating source | Typical $/kWh | Efficiency | Notes |
|---|---|---|---|
| Natural gas (condensing) | $0.03-0.05 | 92-96% | Cheapest fossil fuel in most US markets |
| Natural gas (old furnace) | $0.05-0.07 | 78-85% | 15-30% more fuel than condensing |
| Heating oil | $0.06-0.09 | 83-87% | Common in Northeast US |
| Propane | $0.08-0.12 | 85-95% | Rural areas without gas mains |
| Electric (baseboard) | $0.12-0.25 | 100% | COP 1.0 - most expensive per kWh |
| Wood / pellet | $0.02-0.05 | 70-85% | Cheap fuel, high labor |
| Heat pump (COP 3.5) | $0.04-0.05 | 350% | $0.16/kWh electricity, COP 3.5 |
Practical examples
Savings: $2,057/year, payback 6.1 years, net gain over 15 years: $18,255
Savings: $2,707/year, payback 8.3 years, net gain over 15 years: $18,205
Savings: $3,333/year, payback 3.1 years, net gain over 15 years: $39,500
Savings: $514/year, payback 21.8 years - marginal case, pump barely beats modern gas
Savings: $1,667/year, payback 14.7 years, net gain over 20 years: $8,840
FAQ - Frequently asked questions
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See also
Calculator verified by the LiczGrupa.pl team
Content, formulas and results have been reviewed for accuracy and relevance by our team of specialists.

Reviewed by: Patryk Matyjasik