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Satellites measure recent rates of groundwater depletion in California's Central Valley

Geophysical Research Letters · 2011 · Vol. 38(3)
J. S. FamigliettiMin‐Hui LoSally HoJ BethuneKevin AndersonT. H. SyedSean SwensonCaroline Rozier de LinageMatthew Rodell

Abstract

In highly-productive agricultural areas such as California's Central Valley, where groundwater often supplies the bulk of the water required for irrigation, quantifying rates of groundwater depletion remains a challenge owing to a lack of monitoring infrastructure and the absence of water use reporting requirements. Here we use 78 months (October, 2003–March, 2010) of data from the Gravity Recovery and Climate Experiment satellite mission to estimate water storage changes in California's Sacramento and San Joaquin River Basins. We find that the basins are losing water at a rate of 31.0 ± 2.7 mm yr−1 equivalent water height, equal to a volume of 30.9 km3 for the study period, or nearly the capacity of Lake Mead, the largest reservoir in the United States. We use additional observations and hydrological model information to determine that the majority of these losses are due to groundwater depletion in the Central Valley. Our results show that the Central Valley lost 20.4 ± 3.9 mm yr−1 of groundwater during the 78-month period, or 20.3 km3 in volume. Continued groundwater depletion at this rate may well be unsustainable, with potentially dire consequences for the economic and food security of the United States.

Geophysics and Gravity MeasurementsGeophysical and Geoelectrical MethodsSolar and Space Plasma DynamicsGroundwaterMeasure (data warehouse)GeologyEnvironmental scienceHydrology (agriculture)
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References
Post‐processing removal of correlated errors in GRACE data
Geophysical Research Letters · 2006 · 1,527 citations
Global depletion of groundwater resources
Geophysical Research Letters · 2010 · 2,031 citations
The Global Land Data Assimilation System
Bulletin of the American Meteorological Society · 2004 · 5,589 citations
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