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Boiler Size Calculator

Work out what size boiler you need in kW from your home's dimensions, construction and region, using the Energy Saving Trust CE54 sizing worksheet.

  • Detached
  • Semi-detached
  • Mid terrace
  • Top flat
  • Mid flat
  • Bottom flat
  • m
  • ft
  • m
  • ft
  • Cylinder (2 kW)
  • Large demand (3 kW)
  • Combi (none)
Advanced (construction, region, chimneys)
  • North England & Midlands
  • Scotland
  • South East England & Wales
  • Northern Ireland
  • South West England

CE54 prints five regions only, and draws them unevenly — “South East England and Wales” is one row.

  • Double glazed, 2002 or later
  • Double glazed wood/PVC, before 2002
  • Double glazed metal, before 2002
  • Single glazed wood/PVC
  • Single glazed metal
  • Built 2003 or later
  • Built 1983–2002
  • Filled cavity wall
  • Unfilled cavity wall
  • Solid wall, 220 mm

CE54: pick by year built if you know it, otherwise by construction.

  • Pitched, none
  • Pitched, 50 mm (2″)
  • Pitched, 100 mm (4″)
  • Pitched, 150 mm (6″)
  • Pitched, 200 mm (8″) or more
  • Flat roof, built 1983 or later
  • Flat roof, 25 mm (1″) or more
  • Flat roof, none

Ignored for a mid flat or bottom flat — CE54 sets their roof loss to zero.

  • Insulated, more than 25 mm
  • Suspended, 25 mm (1″) or less
  • Solid, 25 mm (1″) or less

The U-value also depends on floor area ÷ exposed perimeter — the tool does that lookup for you.

m

Leave the four wall counts blank and the tool fills them from the property type. Override them for an end terrace, a corner flat, or anything unusual.

W
W

Boxes P and Q on the CE54 worksheet. Leave both at zero unless you have worked them out separately.

Follows the Energy Saving Trust’s CE54 “Domestic heating sizing method” (December 2003, revised May 2010; technical content by BRE) — the same worksheet a UK heating engineer would fill in by hand.

Boiler size

Recommended boiler output
Heat required
External heat loss
Total floor area
Design heat loss
Where the heat goes (CE54 boxes A–E)
An estimate from the CE54 worksheet, not a heat-loss survey. CE54 was dropped from the final Approved Document L over concerns it can oversize boilers — current guidance is a room-by-room calculation to BS EN 12831-1. Treat this as an indicative figure, not a Building Regulations calculation, and have a Gas Safe engineer confirm any install.

Quick Answer

Boiler size = (party or hot water allowance + total heat loss + 400 W thermal bridging) ÷ 1000, with a minimum of 8 kW. A typical 3-bed semi of 8.5 m × 7 m with cavity walls and double glazing needs 9.3 kW, so you fit a 10 kW boiler. Combis are usually sized by hot water instead, at 24 kW or more.

Flow diagram of the CE54 boiler sizing method: heat lost through windows, walls, roof, floor and ventilation is totalled, scaled by a location factor, then hot water and a 400 W thermal bridging allowance are added to give the boiler size in kW
The CE54 route from heat loss to boiler output: five loss paths total up, scale by region, then gain the hot water and thermal bridging allowances — with a floor of 8 kW.

How the CE54 method sizes a boiler

The calculator follows the Energy Saving Trust’s CE54 Domestic heating sizing method worksheet box by box. It adds up how fast your home loses heat through each surface, scales that by where you live, adds what the hot water and neighbouring dwellings need, and rounds up to a boiler you can actually buy.

Heat required (kW) = (N + G + 400 + P + Q) ÷ 1000
where G = total fabric and ventilation loss in watts, N = the larger of party losses or the hot water allowance, 400 W = thermal bridging, and P and Q = any extension or room in roof. Boiler size = the larger of that figure and 8 kW.

G is built from five separate heat-loss figures, each in watts per kelvin: windows (A), walls (B), roof (C), floor (D) and ventilation (E). Add them, multiply by the location factor for your region, and you have the design heat loss in watts.

CE54 is no longer referenced in Approved Document L. It appeared in the draft but was dropped from the final published version over concerns it can oversize boilers. Treat the result here as an indicative figure and a sanity check on a quote — not a Building Regulations calculation. Full detail below.

The numbers CE54 uses

Every constant below is printed in the CE54 document. The calculator does not invent or interpolate any of them.

Window area is not measured — CE54 infers it from floor area using a factor and a constant that depend on the property type:

Property typeWindow factorWindow constant
Detached, semi-detached, mid terrace0.1278.2
Top flat, mid flat, bottom flat0.0865.7

The U-values — watts lost per square metre per kelvin — come from four short tables. Pick walls by the year built if you know it, otherwise by construction:

WindowsUWallsU
Double glazed, 2002 or later2.0Built 2003 or later0.35
Double glazed wood/PVC, pre-20023.1Built 1983–20020.45
Double glazed metal, pre-20023.7Filled cavity wall0.60
Single glazed wood/PVC4.8Unfilled cavity wall1.60
Single glazed metal5.7Solid wall, 220 mm2.10

Location factor covers design external temperature, a 10% allowance for intermittent heating and a 5% allowance for distribution losses, all rolled into one number:

RegionLocation factor
North England and the English Midlands30.0
Scotland29.4
South East England and Wales27.5
Northern Ireland26.9
South West England25.0

CE54 prints five regions and draws them unevenly — “South East England and Wales” is a single row. The calculator offers exactly those five, because offering a finer region picker would imply precision the source does not have.

The ground floor U-value is the one lookup that depends on shape rather than construction: CE54 divides floor area by exposed perimeter and reads the answer off a ten-row table. A long thin house loses more through its floor than a square one of the same area.

How to use the boiler size calculator

  1. Pick your property type.

    Detached, semi-detached, mid terrace, or one of the three flat positions. This sets which walls face outside, which surfaces lose heat at all, and the window factor.

  2. Measure the outside of your home.

    Length and width of the footprint, in metres or feet — pace it out or use a plan. Length is the longer side. You do not need to measure each room.

  3. Enter the number of floors.

    Storeys of heated living space. A flat is 1. Count a loft conversion only if it is heated and lived in.

  4. Choose how the hot water is heated.

    A separate cylinder adds 2 kW, a larger hot water demand 3 kW, and a combi adds nothing — it heats water on demand rather than reheating a store.

  5. Open Advanced if you know your construction.

    Region, glazing, walls, roof insulation, floor type, room height and open chimneys all sit there with sensible defaults. If you are unsure of the walls and roof, your property’s energy performance certificate lists them.

Worked example: a 3-bed semi

Take a semi-detached house 8.5 m by 7 m over two floors, 2.4 m rooms, filled cavity walls, double glazing fitted after 2002, 100 mm loft insulation, an insulated floor, a hot water cylinder, in the North of England. That is 119 m² of floor area. These are the calculator’s own default values, so you can open it and see every figure below.

CE54 boxSurfaceHeat loss
AWindows46.63 W/K
BWalls50.81 W/K
CRoof23.80 W/K
DFloor38.08 W/K
EVentilation71.63 W/K
FTotal230.95 W/K

Ventilation is the single biggest loss here, ahead of the walls — which surprises people who assume insulation is the whole story. Multiply F by the location factor of 30.0 and you get G = 6,928 W.

The party wall to the neighbour loses 575 W, and the hot water cylinder wants 2,000 W. CE54 takes the larger of the two rather than adding them, so N = 2,000 W. Then:

(2,000 + 6,928 + 400) ÷ 1000 = 9.33 kW → fit the next size up, a 10 kW boiler.

Change one thing at a time and the sensitivity is obvious:

Same house, but…Heat requiredBoiler
As above (baseline)9.33 kW10 kW
Solid 220 mm walls instead of filled cavity13.14 kW14 kW
Single glazed wood windows11.29 kW12 kW
In South West England instead of the North8.17 kW9 kW
Combi instead of a cylinder7.90 kW8 kW
Detached, 10 m × 8 m12.14 kW13 kW
Mid terrace, 8 m × 5 m6.68 kW8 kW
Mid flat, 9 m × 6 m, single storey4.72 kW8 kW

The last two hit the floor: CE54 sets a minimum boiler output of 8 kW, so anything calculating lower is still sized at 8 kW. Note also how little the heating requirement moves compared with the 24–30 kW combis commonly sold — that gap is hot water, not heating.

Combi boilers: why the number jumps

For a combi, CE54 sets the hot water allowance to zero, because a combi has no cylinder to reheat. That makes the heating figure smaller, not larger. But the document adds a rule that pulls in the opposite direction:

CE54, section 8: “In the case of a combi boiler an output of at least 24kW will usually be required to provide satisfactory instantaneous water heating, so the worksheet result ‘V’ should only be used if it is higher.”

So for most homes a combi is sized by the shower, not the radiators. The calculator shows this explicitly when you select the combi option: it prints the heating figure and tells you whether the 24 kW hot water minimum governs instead.

One thing CE54 does not do is size a combi by hot water flow rate in litres per minute. That is the figure boiler merchants use to match a boiler to your shower, and the document contains no method for it. Anywhere you see a flow-rate rule attributed to CE54, it has been added by somebody else.

Where CE54 stands with Building Regulations

CE54 was published by the Energy Saving Trust with technical content by BRE, and installers used it widely as a quick whole-house method for boiler replacements. Its regulatory status has changed.

Per OFTEC’s technical notice 38, the draft Approved Document L listed CE54 as one suitable option for boiler sizing, but it was not included in the final published version. The notice quotes the reasoning directly: “In response to concerns that CE54 may lead to oversizing, it is no longer referenced as a method.” Current guidance expects a room-by-room heat loss calculation to BS EN 12831-1.

That matters because an oversized boiler cycles on and off more, runs less efficiently and costs more to buy. The simplifications that make CE54 fast — inferring window area from floor area, one ventilation rate for every home, one factor for a whole region — are the same ones that make it prone to erring high.

Use this calculator to sanity-check a quote or to understand what drives the number. Do not use it as a compliance calculation, and do not size radiators from it — CE54 points to a separate heating system design method for that. Have a Gas Safe registered engineer carry out a full heat loss calculation before you buy.

If your home runs on oil rather than gas, the same fabric logic drives your consumption — the heating oil usage calculator turns it into litres and a run-out date for your tank.

Boiler size calculator: FAQ

A typical 3-bed semi of about 8.5 m × 7 m over two floors, with filled cavity walls and modern double glazing, works out at 9.3 kW on the CE54 method — so you fit the next size up, a 10 kW boiler. Swap the walls to solid 220 mm brick and the same house needs 14 kW. The construction moves the answer far more than the bedroom count does, which is why entering your actual dimensions beats any “3-bed = 24 kW” rule of thumb.

Because those numbers size the hot water, not the heating. A combi heats water instantly, and CE54 states an output of at least 24 kW is usually needed for satisfactory instantaneous hot water. Space heating for an average UK home rarely exceeds 12 kW. Both figures are real — they answer different questions, and for a combi the larger one governs.

No. CE54 appeared in the draft Approved Document L but was left out of the final published version. OFTEC’s technical notice 38 quotes the reasoning: “In response to concerns that CE54 may lead to oversizing, it is no longer referenced as a method.” Current guidance expects a room-by-room heat loss calculation to BS EN 12831-1. Use this calculator as an indicative figure and a sanity check on a quote, not as a compliance calculation.

8 kW. CE54 sets a minimum heat output of 8 kW for boilers, so a small or well-insulated home that calculates lower is still sized at 8 kW. A mid flat of 9 m × 6 m calculates at 4.7 kW, for example, and is sized at 8 kW.

Yes, and it applies the CE54 rules for them. A mid flat loses no heat through its roof or its floor, a top flat loses none through the floor, and a bottom flat none through the roof — those neighbours are heated. Instead they pick up party losses through shared walls, ceilings and floors, calculated at a 10.6 °C temperature difference.

It infers window area from floor area, assumes a fixed ventilation rate of 0.76 air changes an hour, and uses one location factor for a whole region — so it is an estimate, not a survey. That simplification is exactly why it was dropped from Approved Document L for being prone to oversizing. It is good for checking whether a quoted boiler is roughly right; it is not good enough to specify radiators.
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