Rainwater harvesting calculator

Rainwater harvesting calculator: yearly litres or gallons a roof collects from its area, rainfall and efficiency, and the share of household use it covers.

업데이트 검증한 예제: 5

The area the roof covers on the ground, not the sloped surface.
Share of the rain that reaches the tank after first-flush, splash and evaporation losses; installers typically assume 0.75–0.90.
추가 옵션
litres a day
시도하기
Water collected per year
L
Water collected per year: 68,000 L
소수 자릿수: 0; 가장 가까운 값, 중간값은 끝자리가 짝수인 쪽으로
In other units
68.00m³ / 17,964gal
Average per month
5,667L
Average per day
186.3L
This is a yearly average. Rain rarely falls evenly, so size a tank for the longest dry spell rather than the annual total.

A 100 m² roof with 800 mm of rain a year yields about 68,000 litres (68 m³) at 85% efficiency — 186 litres a day on average.

Rain on the roof

68 m³a year
Collected68,000 LLost12,000 L
계산 방법 S
  1. Rain volume on the footprint

    100 m2×800 mm=80,000 L100\ \text{m}^2 \times 800\ \text{mm} = 80{,}000\ \text{L}

    One millimetre of rain on one square metre is one litre.

  2. Allow for losses

    80,000×0.85=68,000 L80{,}000 \times 0.85 = 68{,}000\ \text{L}
  3. Other units

    68,000 L=68 m3=17,963.7 US gal68{,}000\ \text{L} = 68\ \text{m}^3 = 17{,}963.7\ \text{US gal}

Rainwater harvesting calculator 소개

The yearly harvest is roof footprint area × rainfall × collection efficiency. One millimetre of rain on one square metre is one litre, and one inch on one square foot is 0.623 US gallons. The efficiency, or runoff coefficient, removes the water lost to first-flush diversion, splash-out from gutters, evaporation and overflow.

Homeowners use it to size a rain barrel or tank and to see how far the water goes. The default roof of 100 m² under 800 mm of rain at 0.85 efficiency collects 68,000 litres a year, 186 litres a day on average, which is 62% of a household using 300 litres a day.

The result is a yearly average. Rain arrives in bursts, so a full tank overflows in wet months and runs dry in long dry spells; tank size decides how much of the average you can actually use.

계산 예제

100 m² roof, 600 mm of rain, 0.8 efficiency

Roof footprint area
100 m²
Rainfall per year
600 mm
Collection efficiency (runoff coefficient)
0.8
Water collected per year
48,000 L
In other units
48.00 m³

검증 출처: 1 mm on 1 m² = 1 L, so 100 × 600 × 0.8 = 48 000 L by hand

1,000 ft² and 1 inch with nothing lost

Roof footprint area
1000 ft²
Rainfall per year
1 in
Collection efficiency (runoff coefficient)
1
In other units
623 gal

검증 출처: TWDB manual: about 0.62 gal per ft² per inch; exact 1000 × 0.09290304 m² × 25.4 mm / 3.785411784 L = 623.377 gal (Python decimal)

2,000 ft² roof, 32 inches, 85%

Roof footprint area
2000 ft²
Rainfall per year
32 in
Collection efficiency (runoff coefficient)
0.85
In other units
33,912 gal

검증 출처: Python decimal: 2000 ft² × 32 in × 0.85 = 33 911.7 US gal (the TWDB 0.62 rule of thumb gives 33 728)

No rain collected when efficiency is 0

Roof footprint area
150 m²
Rainfall per year
900 mm
Collection efficiency (runoff coefficient)
0
Water collected per year
0 L

검증 출처: Definition: V = A × R × 0

자주 묻는 질문

How much rainwater can I collect from my roof?

Multiply the roof footprint by the rainfall and a collection efficiency. Each millimetre of rain on a square metre gives one litre, and each inch on a square foot gives 0.623 US gallons, which the Texas Water Development Board rounds to 0.62. A 2,000 ft² roof under 32 inches of rain at 85% efficiency collects about 33,900 US gallons a year.

What collection efficiency should I use?

Between 0.75 and 0.90 for most systems: the Texas Water Development Board manual says most installers assume 75 to 90%. Use the lower end for composite or asphalt shingle roofs, which the manual puts at about a 10% loss, and where a first-flush diverter discards the first 1 to 2 US gallons per 100 ft² of roof in every storm.

Should I measure the sloped roof area or the footprint?

The footprint: the horizontal area the roof covers, length × width from eave to eave, whatever the pitch (Texas Water Development Board). A steep roof whose eaves enclose 10 × 10 m has a 100 m² catchment, the same as a flat one. If only some gutters feed the tank, count only the area they drain.

How much water does a household use per day?

The Texas Water Development Board puts a water-conserving household at 25 to 50 US gallons (95 to 189 litres) per person per day, and cites a 1999 American Water Works Association study in which water-conserving homes averaged 49.6 gallons. Enter your household total under More options: a 300 litre-a-day household gets 62% of its use from the default 100 m² roof.

What size rainwater tank do I need?

Enough to carry the household through the longest expected spell without rain, which is the rule in the Texas Water Development Board manual. At 300 litres a day, a 30-day dry spell needs about 9,000 litres of storage. A tank much smaller than that spills in wet months and runs dry between storms, so it captures less than the yearly figure shown.

“Rainwater harvesting calculator”의 정확도는 어느 정도인가요?

정확도는 입력값과 계산 방법의 가정에 따라 달라집니다. 십진 연산은 유효숫자 50자리를 사용하지만, 추정값·수치해석 방법·원본 데이터의 정밀도는 더 낮을 수 있습니다. 표시값을 반올림해도 이러한 한계는 사라지지 않습니다. 독립적인 출처의 풀이와 대조한 계산 예시: 5. 예를 들어 “100 m² roof, 600 mm of rain, 0.8 efficiency”은 1 mm on 1 m² = 1 L, so 100 × 600 × 0.8 = 48 000 L by hand와 대조해 확인합니다.

이 계산 방법의 출처는 무엇인가요?

Texas Water Development Board, The Texas Manual on Rainwater Harvesting, 3rd ed. (2005), ch. 4 — 0.62 gal per ft² per inch; 75–90% efficiency; BS EN 16941-1:2018 — On-site non-potable water systems, part 1: systems for the use of rainwater.

이 계산기 소개

V (L)=A (m2)×R (mm)×CV\ (\text{L}) = A\ (\text{m}^2) \times R\ (\text{mm}) \times C

출처

  1. Texas Water Development Board, The Texas Manual on Rainwater Harvesting, 3rd ed. (2005), ch. 4 — 0.62 gal per ft² per inch; 75–90% efficiency
  2. BS EN 16941-1:2018 — On-site non-potable water systems, part 1: systems for the use of rainwater

출처와 대조하여 검증

이 계산기에는 독립적인 출처에서 답을 얻은 계산 예제가 5개 있습니다. 테스트 모음에서 실행되며 여기에서도 실행할 수 있습니다.

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