Renewable internal freshwater resources, total (billion cubic) in High income

High income: Renewable internal freshwater resources, total (billion cubic) was 0 billion cubic meters per person in 2022. ▲ Rising

Latest (2022)
0 billion cubic meters per person
Change on year
down 0.5%
Rank
9th
of 43 groups
All-time high
0 billion cubic meters per person
in 1992
All-time low
0 billion cubic meters per person
in 1991
Years of data
62
1961–2022

Renewable internal freshwater resources, total (billion cubic) in High income, 1961–2022

000000196119912022

Source: Statizoid (derived). Measured in billion cubic meters per person.

Analysis

The most recent figure for renewable internal freshwater resources, total (billion cubic) in High income is 0 billion cubic meters per person, measured in 2022.

Compared with earlier readings it is down 0.5% on the previous year and down 4.0% over ten years.

Over the whole period, renewable internal freshwater resources, total (billion cubic) in High income peaked at 0 billion cubic meters per person in 1992 and was at its lowest, 0 billion cubic meters per person, in 1991.

High income ranks 9th of 43 groups on this measure, in the top quarter.

The long-run direction has been consistently rising across the 62 years of available data.

Renewable internal freshwater resources, total (billion cubic) in High income, year by year

Annual values for Renewable internal freshwater resources, total (billion cubic meters), per capita in High income, 1961 to 2022.
Year billion cubic meters per person Change
1961 0 billion cubic meters per person
1962 0 billion cubic meters per person -1.2%
1963 0 billion cubic meters per person -1.2%
1964 0 billion cubic meters per person -1.2%
1965 0 billion cubic meters per person -1.1%
1966 0 billion cubic meters per person -1.0%
1967 0 billion cubic meters per person -1.0%
1968 0 billion cubic meters per person -0.9%
1969 0 billion cubic meters per person -0.9%
1970 0 billion cubic meters per person -0.9%
1971 0 billion cubic meters per person -1.1%
1972 0 billion cubic meters per person -0.9%
1973 0 billion cubic meters per person -0.9%
1974 0 billion cubic meters per person -0.9%
1975 0 billion cubic meters per person -0.9%
1976 0 billion cubic meters per person -0.8%
1977 0 billion cubic meters per person -0.8%
1978 0 billion cubic meters per person -0.8%
1979 0 billion cubic meters per person -0.8%
1980 0 billion cubic meters per person -0.8%
1981 0 billion cubic meters per person -0.8%
1982 0 billion cubic meters per person -0.7%
1983 0 billion cubic meters per person -0.7%
1984 0 billion cubic meters per person -0.7%
1985 0 billion cubic meters per person -0.7%
1986 0 billion cubic meters per person -0.7%
1987 0 billion cubic meters per person -0.7%
1988 0 billion cubic meters per person -0.7%
1989 0 billion cubic meters per person -0.7%
1990 0 billion cubic meters per person -0.6%
1991 0 billion cubic meters per person -0.7%
1992 0 billion cubic meters per person +41.2%
1993 0 billion cubic meters per person -0.5%
1994 0 billion cubic meters per person -0.6%
1995 0 billion cubic meters per person -0.6%
1996 0 billion cubic meters per person -0.6%
1997 0 billion cubic meters per person -0.6%
1998 0 billion cubic meters per person -0.5%
1999 0 billion cubic meters per person -0.5%
2000 0 billion cubic meters per person -0.5%
2001 0 billion cubic meters per person -0.5%
2002 0 billion cubic meters per person -0.5%
2003 0 billion cubic meters per person -0.5%
2004 0 billion cubic meters per person -0.5%
2005 0 billion cubic meters per person -0.5%
2006 0 billion cubic meters per person -0.6%
2007 0 billion cubic meters per person -0.7%
2008 0 billion cubic meters per person -0.7%
2009 0 billion cubic meters per person -0.6%
2010 0 billion cubic meters per person -0.4%
2011 0 billion cubic meters per person -0.4%
2012 0 billion cubic meters per person -0.6%
2013 0 billion cubic meters per person -0.6%
2014 0 billion cubic meters per person -0.5%
2015 0 billion cubic meters per person -0.6%
2016 0 billion cubic meters per person -0.6%
2017 0 billion cubic meters per person -0.4%
2018 0 billion cubic meters per person -0.3%
2019 0 billion cubic meters per person -0.4%
2020 0 billion cubic meters per person -0.3%
2021 0 billion cubic meters per person +0.1%
2022 0 billion cubic meters per person -0.5%

Averages by decade

DecadeAverage LowestHighest Years
1960s 0 billion cubic meters per person 0 billion cubic meters per person 0 billion cubic meters per person 9
1970s 0 billion cubic meters per person 0 billion cubic meters per person 0 billion cubic meters per person 10
1980s 0 billion cubic meters per person 0 billion cubic meters per person 0 billion cubic meters per person 10
1990s 0 billion cubic meters per person 0 billion cubic meters per person 0 billion cubic meters per person 10
2000s 0 billion cubic meters per person 0 billion cubic meters per person 0 billion cubic meters per person 10
2010s 0 billion cubic meters per person 0 billion cubic meters per person 0 billion cubic meters per person 10
2020s 0 billion cubic meters per person 0 billion cubic meters per person 0 billion cubic meters per person 3

Countries ranked near High income

  1. 6 Canada 0.0001 billion cubic meters per person compare
  2. 7 Norway 0.0001 billion cubic meters per person compare
  3. 8 Gabon 0.0001 billion cubic meters per person compare
  4. 9 New Zealand 0.0001 billion cubic meters per person compare
  5. 10 Solomon Islands 0.0001 billion cubic meters per person compare
  6. 11 Peru 0 billion cubic meters per person compare
  7. 12 Chile 0 billion cubic meters per person compare

See the full ranking of 229 places →

More infrastructure data for High income

All data for High income →

Frequently asked questions

What is renewable internal freshwater resources, total (billion cubic) in High income?
Renewable internal freshwater resources, total (billion cubic) in High income was 0 billion cubic meters per person in 2022, according to Statizoid (derived).
What is the highest renewable internal freshwater resources, total (billion cubic) recorded in High income?
The highest recorded value was 0 billion cubic meters per person in 1992.
What is the lowest renewable internal freshwater resources, total (billion cubic) recorded in High income?
The lowest recorded value was 0 billion cubic meters per person in 1991.
How does High income rank for renewable internal freshwater resources, total (billion cubic)?
High income ranks 9th out of 43 groups with data for 2022.
Is renewable internal freshwater resources, total (billion cubic) rising or falling in High income?
Over the last ten years it is down 4.0%. The long-run trend across the full record is rising.
Where does this High income data come from?
The figures come from Statizoid (derived), published as part of Renewable internal freshwater resources, total (billion cubic meters), per capita. Statizoid updates them automatically from the source API.

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Renewable internal freshwater resources, total (billion cubic) in High income. Statizoid, drawing on Statizoid (derived). Retrieved 26 August 2026, from https://infrastructure.statizoid.com/stat/renewable-internal-freshwater-resources-total-billion-cubic-meters-per-capita/high-income/

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How this figure is calculated

Renewable internal freshwater resources, total (billion cubic meters) divided by Population, total, matched on country and year. Neither publisher issues this ratio as a series; it is computed here from both.

Renewable internal freshwater resources, total (billion cubic meters) ÷ Population, total

Computed from

Statizoid computes this series; the underlying measurements belong to the publishers named above. The arithmetic is applied to every country and year where both inputs report, and nothing is estimated unless the page says so.

About this data

Indicator
Renewable internal freshwater resources, total (billion cubic meters), per capita
Unit
billion cubic meters per person
Source
Statizoid (derived)
Licence
Derived by Statizoid from the sources named on the page
Coverage
229 places, 13,132 data points, 1961–2022
Last refreshed

Renewable internal freshwater resources, total (billion cubic meters) divided by Population, total, matched on country and year. Neither publisher issues this ratio as a series; it is computed here from both.