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What size rainwater tank do I need?

Roof area and your local Bureau of Meteorology rainfall give the litres you can catch. What you use over a dry run gives the tank.

Picking a station fills the rainfall box below. Rainfall changes a lot over short distances — if yours does, type your own.
Long-term mean. Edit this to use your own figure from the Bureau.
The area seen from above, not the sloped area. Only the part that drains to the tank.
Toilet and laundry for a family of four is roughly 200 L a day. Garden only, far less.
How long your area goes without useful rain. This is what sets the tank size.
The share of rain that reaches the tank. 0.85 is mid-range; 0.8–0.9 is the usual band.

An estimate to plan with, not a substitute for a proper sizing by a plumber or tank supplier. It uses a long-term average against one dry run — a real drought is longer than an average, and a tank that supplies drinking water, a fire service or a required rainwater connection has rules this does not cover.

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How we worked this out

  • One millimetre of rain on one square metre is one litre. That is geometry, not an estimate — 1 mm × 1 m² = 0.001 m³ = 1 L
  • What your roof catches in a year = roof area × annual rainfall × the runoff coefficient
  • Tank size = daily use × the longest dry run, rounded up to the next tank you can buy
  • The check = what the roof catches in a year against what you plan to use in a year. If use beats catch, no tank fixes it

Where the figures come from: rainfall is the long-term mean from the Bureau of Meteorology's Climate statistics for Australian locations, read 3 September 2026 — each station and its record length is in the table below (bom.gov.au). The runoff coefficient is a rule of thumb, not a standard. We looked for an Australian Standard that fixes it and did not find one; 0.85 sits in the middle of the 0.8 to 0.9 band Australian tank suppliers and water authorities publish, and it is editable above for exactly that reason. It covers the first flush you divert, water blown off the roof, and what overshoots the gutter in heavy rain.

The tank size is set by the dry run, not by the rain

Your roof decides whether the tank ever fills. The dry spell decides how big it has to be. Those are two different questions and most tank calculators only answer the first one.

A 150 m² Sydney roof catches around 154,000 litres a year. That sounds like plenty for a household using 73,000 litres a year — and it is, on the annual total. But rain does not arrive on a schedule. If your area goes two months without useful rain and you are drawing 200 litres a day, you need 12,000 litres sitting in the tank when the dry starts. A 5,000 litre tank fed by that same generous roof runs empty in twenty-five days.

So the sequence is: size the tank on the dry run, then check the roof can refill it.

Long-term rainfall, by station

These are Bureau of Meteorology long-term means. The record length matters — a mean over 160 years is a much steadier number than one over 12.

StationAnnual meanRecord
Cairns Aero (031011)2,025.5 mm83 years
Darwin Airport (014015)1,736.8 mm85 years
Coffs Harbour Airport (059151)1,727.8 mm12 years
Gold Coast Seaway (040764)1,302.2 mm31 years
Sydney Observatory Hill (066062)1,211.1 mm162 years
Townsville Aero (032040)1,162.3 mm85 years
Wollongong University (068228)1,148.5 mm27 years
Newcastle Nobbys (061055)1,124.6 mm161 years
Brisbane Airport (040842)1,030.9 mm31 years
Toowoomba Airport (041529)737.2 mm30 years
Perth Metro (009225)718.5 mm33 years
Ballarat Aerodrome (089002)683.1 mm118 years
Launceston Ti Tree Bend (091237)679.8 mm46 years
Melbourne Regional Office (086071)648.3 mm160 years
Canberra Airport (070351)635.5 mm17 years
Hobart Ellerslie Road (094029)611.0 mm144 years
Adelaide West Terrace (023000)524.5 mm149 years
Alice Springs Airport (015590)283.8 mm84 years

Rainfall varies enormously over short distances — the Dandenongs against inner Melbourne, the escarpment against the Illawarra flats. If your suburb is wetter or drier than the nearest capital, look your own station up at the Bureau and type the number in.

Two worked examples

Sydney, 150 m² roof, 200 L a day, a two-month dry run.

  • Catch: 150 × 1,211.1 × 0.85 = 154,415 L a year
  • Use: 200 × 365 = 73,000 L a year — the roof catches more than twice that
  • Tank: 200 × 60 = 12,000 L, so the next size you can buy is 13,500 L
  • Every 10 mm of rain puts 1,275 L in that tank

Adelaide, 80 m² roof, 150 L a day, a three-month dry run.

  • Catch: 80 × 524.5 × 0.85 = 35,666 L a year
  • Use: 150 × 365 = 54,750 L a year — the roof only covers about 65% of it
  • Tank: 150 × 90 = 13,500 L
  • The tank size is right and the roof still cannot keep up. Either connect more roof, use less, or accept topping up from the mains in a dry year.

What people get wrong about roof area

  • Use the plan area, not the sloped area. Rain falls vertically, so a steep roof catches no more than a flat one of the same footprint. Measure the outline of the building, including the eaves.
  • Only count what actually drains to the tank. Half a roof plumbed to the tank is half the catch, however big the house is.
  • A shed or carport counts. It is often the cheapest way to add catchment, and the down-pipe run is short.

The parts that are not about size

  • Gutter guard and a first-flush diverter. The diverter throws away the first few millimetres carrying roof grit and bird mess. It is why the runoff coefficient is not 1.0.
  • Overflow has to go somewhere legal. A tank overflow that dumps against a footing or over a boundary is a problem you build in once and live with.
  • The base. A full 10,000 litre tank weighs about 10 tonnes. It needs a properly prepared pad, and on sloping or filled ground that is an engineering question, not a levelling job.
  • Drinking water is a different conversation. Roof-caught water for drinking has health guidance attached — roof material, flashing, lead paint, nearby stacks. Ask your state health department before you plumb a tank to a kitchen tap.
  • Some councils require a tank on a new build or a major renovation, at a set minimum size and plumbed to set fixtures. Check before you buy, because the required size may be bigger than the useful one.
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General information for Australian homeowners and trades, and an estimate only — not legal advice, and not planning or building advice, and not a substitute for a proper sizing by a plumber, tank supplier or engineer. Rainfall figures are long-term means read from the Bureau of Meteorology on 3 September 2026 and an average is not a forecast — a real drought runs longer than an average dry spell. The runoff coefficient is a rule of thumb; no Australian Standard fixing it was found. Rainwater used for drinking carries state health guidance, tank supports and overflow can be engineering questions, and some councils set a minimum tank size and required connections. No regulator has reviewed this page.