Hydronic Heating: Boiler AFUE and Heat Loss Factors
Sizing a residential or commercial boiler correctly is the key to an efficient hydronic heating system (baseboards or radiant floor loops). If a boiler is oversized, it will short-cycle, leading to massive efficiency losses and premature component failure. When using our boiler sizing calculator, keep in mind your boiler’s AFUE (Annual Fuel Utilization Efficiency) rating. For example, an 80,000 BTU input boiler with an 85% AFUE will only deliver 68,000 BTUs of actual heating power to your radiators or floor loops. It’s also critical to account for your home’s total envelope heat loss, including drafty windows and poor insulation.
♨️ What Size Boiler Do You Need? — kW & BTU
Calculate the boiler output your home needs for Combi, System or Regular (heat-only) boilers — in kW (UK/EU) and BTU/hr (US/Canada). Factors in floor area, insulation, glazing, climate and your hot-water demand.
🌍 Choose your units
🏠1. Property Type
Detached homes lose heat through more external walls than a flat or mid-terrace of the same size.
📐2. Floor Area
Range: 400 – 5,000 sq ft. Include all heated rooms.
🧱3. Insulation & Glazing
🌍4. Climate Zone
Colder regions need more heat output per square foot on a design-cold day.
🚿5. Hot Water Demand
This drives Combi boiler sizing — a combi heats tap water instantly, so it must be big enough for your showers.
Boiler Size Chart by House Type (kW & BTU)
Use this quick-reference table to find a typical boiler size for your home. Then use the calculator above to adjust for your exact insulation, glazing and climate.
| Property | Combi Boiler | System / Regular | Heat Load |
|---|---|---|---|
| 1–2 bed flat / apartment | 24 – 27 kW | 12 kW | ~18,000 BTU/hr |
| 2–3 bed terraced | 24 – 28 kW | 12 – 15 kW | ~30,000 BTU/hr |
| 3 bed semi-detached | 28 – 32 kW | 15 – 18 kW | ~38,000 BTU/hr |
| 4 bed detached | 32 – 38 kW | 24 kW | ~63,000 BTU/hr |
| 5+ bed / 2+ bathrooms | 38 – 42 kW | 30 – 40 kW | ~90,000+ BTU/hr |
Combi sizes are driven by hot water demand, not just heat loss — that's why a 3-bed home needs a 28–32 kW combi but only a 15–18 kW system boiler. Poor insulation, single glazing and severe cold climates push the heating load higher.
Combi vs System vs Regular Boilers
The three boiler types are sized very differently — picking the right type matters as much as picking the right output.
Combi (Combination) Boiler
Heats your radiators and produces hot water instantly on demand — no cylinder, no loft tank. Because it must heat cold mains water in real time while you shower, its kW rating is driven by hot water flow, not by heat loss. That's why combis carry much bigger numbers (28–42 kW) than the actual heating requirement. Best for flats and 1-bathroom homes; struggles if two showers run at once.
System Boiler
Works with a hot water cylinder (but no loft tank). Sized to your space-heating load plus roughly 2–3 kW to reheat the cylinder. Because the cylinder stores hot water, it handles multiple bathrooms far better than a combi. Typical sizes are 12–30 kW.
Regular / Conventional (Heat-Only) Boiler
The traditional setup with both a cylinder and a cold-water tank in the loft. Sized the same way as a system boiler. Common in older UK homes with existing pipework, and where mains pressure is poor.
How Boiler Size Is Calculated
Boiler sizing separates space heating (your radiators) from domestic hot water (your taps and showers).
1. Space Heating (Radiator) Load
Floor area × a heat-loss factor for your insulation and climate × a glazing multiplier. A well-insulated modern home might need only 55 W/m², while a solid-brick pre-1980 house can need 110–130 W/m². That total is your radiator output requirement, shown in both kW and BTU/hr.
2. Hot Water Demand
For a combi, hot water dictates the size: roughly 24–27 kW for a 1-bathroom flat, 28–32 kW for a typical 3-bed home, and 35–42 kW where there are two bathrooms or a high-flow rain shower. Each kW delivers roughly 0.4 litres per minute of hot water.
3. Why Bigger Isn't Better
An oversized boiler short-cycles — firing up and shutting off repeatedly — which wastes gas, adds wear, and stops a condensing boiler reaching its efficient condensing mode. Modern condensing boilers work best when correctly sized and run at lower flow temperatures (around 55 °C).
Frequently Asked Questions
What size boiler do I need for a 3-bedroom house?
What size boiler do I need for a 4-bedroom house?
What's the difference between kW and BTU for boilers?
Is a bigger boiler better?
Can I fit a combi boiler in a house with 2 bathrooms?
Does insulation change the boiler size I need?
How many radiators can a boiler run?
Related tools from Refcon HVAC
- Furnace Size Calculator (forced air)
- Heat Pump Sizing & Savings Calculator
- BTU Load Calculator
- Electricity Cost Calculator
Last updated: 2026. Reviewed by the Refcon HVAC engineering team. Planning estimate — confirm with a Gas Safe registered engineer (UK) or licensed heating contractor (US/Canada). Tell us about an error.
Estimates vary by contractor. Compare free quotes from licensed local pros before you commit. Request a quote →
High-efficiency systems may qualify for utility rebates and federal or state incentives. Find current programs at ENERGY STAR & DSIRE.
Figures are reviewed by the Refcon HVAC engineering team using U.S. DOE, ENERGY STAR & ACCA Manual J data. Estimates only — confirm with a licensed pro.
