Historical exposure to drought — Land soil moisture anomaly in Charleston-North Charleston, SC

Charleston-North Charleston, SC: Historical exposure to drought — Land soil moisture anomaly was -2.95 Percentage change in 2025. ◆ Volatile

Latest (2025)
-2.95 Percentage change
Change on year
up 67.9%
Rank
1746th
of 3112 regions
All-time high
15.04 Percentage change
in 2020
All-time low
-19.08 Percentage change
in 1954
Years of data
76
1950–2025

Historical exposure to drought — Land soil moisture anomaly in Charleston-North Charleston, SC, 1950–2025

-20-1001020195019872025

Source: Organisation for Economic Co-operation and Development. Measured in Percentage change.

Analysis

In 2025, historical exposure to drought — land soil moisture anomaly in Charleston-North Charleston, SC stood at -2.95 Percentage change.

The figure is up 67.9% on the previous year and down 200.3% over ten years.

Over the whole period, historical exposure to drought — land soil moisture anomaly in Charleston-North Charleston, SC peaked at 15.04 Percentage change in 2020 and was at its lowest, -19.08 Percentage change, in 1954.

That places Charleston-North Charleston, SC 1746th out of 3112 regions with data for 2025, putting it in the middle of the range.

The series is highly variable year to year, so single readings are best treated with caution.

Historical exposure to drought — Land soil moisture anomaly in Charleston-North Charleston, SC, year by year

Annual values for Historical exposure to drought — Land soil moisture anomaly in Charleston-North Charleston, SC, 1950 to 2025.
Year Percentage change Change
1950 -9.56 Percentage change
1951 -12.61 Percentage change +31.9%
1952 -7.76 Percentage change -38.5%
1953 -10.67 Percentage change +37.6%
1954 -19.08 Percentage change +78.8%
1955 -17.03 Percentage change -10.8%
1956 -9.61 Percentage change -43.5%
1957 -3 Percentage change -68.8%
1958 -4.88 Percentage change +62.8%
1959 9.05 Percentage change -285.6%
1960 -8.14 Percentage change -189.9%
1961 -10.89 Percentage change +33.8%
1962 -8.45 Percentage change -22.5%
1963 0.8715 Percentage change -110.3%
1964 5.34 Percentage change +512.6%
1965 -7.57 Percentage change -241.7%
1966 -6.14 Percentage change -18.9%
1967 -10.5 Percentage change +71.1%
1968 -7.77 Percentage change -26.1%
1969 -7.89 Percentage change +1.5%
1970 -6.64 Percentage change -15.9%
1971 11.63 Percentage change -275.3%
1972 -1.23 Percentage change -110.6%
1973 -5.62 Percentage change +356.5%
1974 -5.36 Percentage change -4.5%
1975 -4.21 Percentage change -21.5%
1976 3.28 Percentage change -178.0%
1977 -1.97 Percentage change -160.1%
1978 -3.26 Percentage change +65.2%
1979 -2.27 Percentage change -30.2%
1980 -2.81 Percentage change +23.4%
1981 -6.17 Percentage change +120.0%
1982 7.17 Percentage change -216.2%
1983 2.68 Percentage change -62.7%
1984 3.94 Percentage change +46.9%
1985 -2.72 Percentage change -169.2%
1986 -4.77 Percentage change +75.2%
1987 5.37 Percentage change -212.6%
1988 -0.8099 Percentage change -115.1%
1989 -0.0151 Percentage change -98.1%
1990 -10.09 Percentage change +66664.1%
1991 0.0462 Percentage change -100.5%
1992 8.55 Percentage change +18425.7%
1993 -0.8166 Percentage change -109.5%
1994 2.57 Percentage change -414.3%
1995 6.1 Percentage change +137.6%
1996 -0.3266 Percentage change -105.4%
1997 13.16 Percentage change -4128.8%
1998 -4.29 Percentage change -132.6%
1999 3.71 Percentage change -186.7%
2000 -4.55 Percentage change -222.5%
2001 -7.34 Percentage change +61.3%
2002 -2.7 Percentage change -63.2%
2003 5.98 Percentage change -321.5%
2004 5.2 Percentage change -13.1%
2005 7.55 Percentage change +45.1%
2006 -6.08 Percentage change -180.6%
2007 -11.63 Percentage change +91.2%
2008 3.12 Percentage change -126.8%
2009 -6.97 Percentage change -323.4%
2010 -5.85 Percentage change -16.0%
2011 -6.47 Percentage change +10.5%
2012 -9.14 Percentage change +41.3%
2013 1.87 Percentage change -120.5%
2014 1.73 Percentage change -7.3%
2015 2.94 Percentage change +69.5%
2016 -4.1 Percentage change -239.6%
2017 -8.28 Percentage change +101.8%
2018 2.96 Percentage change -135.7%
2019 -12.64 Percentage change -527.7%
2020 15.04 Percentage change -219.0%
2021 3.04 Percentage change -79.8%
2022 -1.1 Percentage change -136.0%
2023 2.58 Percentage change -335.1%
2024 -9.2 Percentage change -457.2%
2025 -2.95 Percentage change -67.9%

Averages by decade

DecadeAverage LowestHighest Years
1950s -8.52 Percentage change -19.08 Percentage change 9.05 Percentage change 10
1960s -6.11 Percentage change -10.89 Percentage change 5.34 Percentage change 10
1970s -1.56 Percentage change -6.64 Percentage change 11.63 Percentage change 10
1980s 0.1858 Percentage change -6.17 Percentage change 7.17 Percentage change 10
1990s 1.86 Percentage change -10.09 Percentage change 13.16 Percentage change 10
2000s -1.74 Percentage change -11.63 Percentage change 7.55 Percentage change 10
2010s -3.7 Percentage change -12.64 Percentage change 2.96 Percentage change 10
2020s 1.24 Percentage change -9.2 Percentage change 15.04 Percentage change 6

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Frequently asked questions

What is historical exposure to drought — land soil moisture anomaly in Charleston-North Charleston, SC?
Historical exposure to drought — land soil moisture anomaly in Charleston-North Charleston, SC was -2.95 Percentage change in 2025, according to Organisation for Economic Co-operation and Development.
What is the highest historical exposure to drought — land soil moisture anomaly recorded in Charleston-North Charleston, SC?
The highest recorded value was 15.04 Percentage change in 2020.
What is the lowest historical exposure to drought — land soil moisture anomaly recorded in Charleston-North Charleston, SC?
The lowest recorded value was -19.08 Percentage change in 1954.
How does Charleston-North Charleston, SC rank for historical exposure to drought — land soil moisture anomaly?
Charleston-North Charleston, SC ranks 1746th out of 3112 regions with data for 2025.
Is historical exposure to drought — land soil moisture anomaly rising or falling in Charleston-North Charleston, SC?
Over the last ten years it is down 200.3%. The long-run trend across the full record is volatile.
Where does this Charleston-North Charleston, SC data come from?
The figures come from Organisation for Economic Co-operation and Development, published as part of Historical exposure to drought — Land soil moisture anomaly. Statizoid updates them automatically from the source API.

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Historical exposure to drought — Land soil moisture anomaly in Charleston-North Charleston, SC. Statizoid, drawing on Organisation for Economic Co-operation and Development. Retrieved 01 September 2026, from https://environment.statizoid.com/stat/historical-exposure-to-drought-land-soil-moisture-anomaly/charleston-north-charleston-sc/

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About this data

Indicator
Historical exposure to drought — Land soil moisture anomaly
Unit
Percentage change
Source
Organisation for Economic Co-operation and Development
Licence
OECD Terms and Conditions (attribution required)
Coverage
3,375 places, 256,500 data points, 1950–2025
Last refreshed

The dataset provides annual anomalies in land and cropland soil moisture content of the top soil layer (0 to 7 cm) compared to the reference period 1981-2010. Exposure indicators to drought have been prepared by the Organisation for Economic Co-operation and Development (OECD). Please see the working paper for a more complete description of the methods. The datasets span the period 1981-2024 and is the result of the use of a variety of geospatial data sources, including the ERA5-Land averaged monthly data of volumetric soil moisture and ESA CCI land cover data. Average anomalies have been calculated for both land and cropland exposure to drought. The dataset has a global coverage on a national level; on the sub-national TL2 level (i.e. large subnational regions) results are reported for all OECD countries as well as for Argentina, Brazil, China, India, Indonesia and South Africa. A number of aggregates are included: Euro area, European Union, Advanced economies, Emerging market economies, G7, G20, OECD, OECD Europe, OECD Asia Oceania, OECD Americas and the LAC region. Data source(s): Copernicus Climate Change Initiative land cover data and Copernicus Climate Data Store monthly soil moisture data based on the ERA5-Land reanalysis dataset. Contact: ENV.Stat@oecd.org