- Roof plan area
- 50m²
- Rainfall
- 20mm
- Runoff coefficient
- 0.85
850L
Open with these values850L
Result: 850 LOne millimetre of rain on one square metre is exactly one litre — that identity is why area in m² times rainfall in mm gives litres with no conversion factor at all. The runoff coefficient then takes off what splashes, evaporates or goes to the first flush: about 0.85 for a hard roof.
Held fixed: Roof plan area 50.0 m², Rainfall 20.0 mm.
| Runoff coefficient | Result (L) |
|---|---|
| 0.65 | 650 |
| 0.70 | 700 |
| 0.75 | 750 |
| 0.80 | 800 |
| 0.85Your value | 850 |
| 0.90 | 900 |
| 0.95 | 950 |
| 1.00 | 1,000 |
850L
Open with these values1,000L
Open with these values5,250L
Open with these valueslitres = area (m²) × rainfall (mm) × runoff
Area times rainfall is the rain that lands on the roof, not the water that reaches the tank. A 50 m² roof in 20 mm of rain catches 1000 litres, and at 0.85 only 850 of them arrive. Leaving the coefficient at 1 quietly overstates every result.
1 mm is 0.001 m, and 0.001 m across 1 m² is 0.001 m³, which is a litre by definition. That identity is why the formula carries no conversion factor at all.
Take the footprint the roof covers, seen from above. Rainfall is measured as a vertical depth, so the pitch does not change how much water lands on the roof.
Put the local annual rainfall into the rainfall field and a 50 m² roof at 0.85 gathers about 34000 litres. A full tank overflows, so in practice the storage you have limits what you actually keep.
I entered 85 for an 85 percent runoff coefficient.
The field takes a share between 0.1 and 1, so 85 percent is 0.85. Enter the fraction rather than the percentage.
I measured the sloping surface of the roof.
The effective collection surface is the area the roof covers, seen from above. Rain falls as a vertical depth, so the pitch adds nothing to the catch.
My roof is planted, so 0.85 works there as well.
A green roof holds back far more water and sits nearer 0.3, while a sealed surface approaches 1.0. Both of those edge figures are rough guides and do not come from the source behind this calculator.
34000 litres a year means 34000 litres in my tank.
That is what the roof delivers over the year, not what you can store. A full cistern overflows, and the tank is usually the real limit.
| Area, rainfall, runoff | Rain on the roof | Collected (L) |
|---|---|---|
| 1, 1, 1 | 1 L | 1 |
| 25.5, 12.3, 0.9 | 313.65 L | 282 |
| 50, 20, 0.85 | 1000 L | 850 |
| 100, 10, 1 | 1000 L | 1000 |
| 200, 35, 0.75 | 7000 L | 5250 |
Multiply the roof's plan area in square metres by the rainfall in millimetres and by the runoff coefficient. A 50 m² roof in 20 mm of rain at 0.85 collects 850 litres.
Because 1 mm is 0.001 m, and 0.001 m across 1 m² is 0.001 m³, which is one litre by definition. It is a unit identity rather than an approximation, and it is the reason the formula carries no conversion factor.
It is the share of rain that actually reaches the tank after splashing, evaporation and the first flush. Installers assume 75 to 90 percent for a hard roof, so 0.85 is a fair default; a sealed surface approaches 1.0 and a green roof is nearer 0.3.
The plan area — the footprint the roof covers, seen from above. Rainfall is measured as a vertical depth, so the pitch of the roof does not change how much water lands on it.
Put your local annual rainfall into the rainfall field instead of a single shower. A 50 m² roof under 800 mm a year at 0.85 gathers about 34000 litres — though a full tank overflows, so storage usually limits what you actually keep.
Information, not professional advice.
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