Hub Nexus

A Powerful New Tool to Assess Water Resources in California’s Central Valley

Competition for water resources is growing throughout California, particularly in the Central Valley. Since 1980, the Central Valley’s population has nearly doubled to 3.8 million people. It is expected to increase to 6 million by 2020. Statewide population growth, anticipated reductions in Colorado River water deliveries, drought, and the ecological crisis in the Sacramento–San Joaquin Delta have created an intense demand for water. Tools and information can be used to help manage the Central Valley aquifer system, an important State and national resource.

The U.S. Geological Survey (USGS) has released results from a study on the largest water reservoir in the State of California, the Central Valley groundwater system. The findings show continued loss of stored groundwater in the southern part of the valley (see figure below). Since about 1960, groundwater has been depleted by almost 60 million acre-feet, which is, on average, enough to supply every resident of California with water for 8 years.

In order to complete the study, the USGS developed an extensive, detailed three-dimensional (3D) computer model of the hydrologic system of the Central Valley (Faunt, 2009). The Central Valley Hydrologic Model (CVHM) simultaneously accounts for changing water supply and demand across the landscape, and simulates surface water and groundwater flow across the entire Central Valley.

This new hydrologic modeling tool can be used by water managers to understand how water moves through the aquifer system, predict water-supply scenarios, and address issues related to water competition in California and the Central Valley including:

  • Conjunctive water use (interdependent use of surface water and groundwater);
  • Conservation of agricultural land;
  • Land-use change, including environmental concerns and urbanization, and its effects on water resources; and
  • Effects of climate change.

Groundwater Loss Central Valley Facts

  • California’s Central Valley covers about 20,000 square miles, and is one of the most productive agricultural regions in the world.
  • More than 250 different crops are grown in the Central Valley, with an estimated value of $17 billion per year.
  • Approximately one-sixth of the Nation’s irrigated land is in the Central Valley.
  • About one-fifth of the Nation’s groundwater pumpage is from the Central Valley aquifer system.

The CVHM is built on knowledge from USGS and other Federal, State, and local studies. The CVHM was constrained by comparing simulated and historically observed groundwater levels, streamflows, and subsidence. The detail and breadth of this hydrologic modeling tool provides a better understanding of valleywide hydrologic processes. This tool also provides realistic boundary conditions so that finely gridded models of smaller areas can be easily developed.

California's Central Valley Groundwater Study: A Powerful New Tool to Assess Water Resources in California's Central Val

California's Central Valley Groundwater Study: A Powerful New Tool to Assess Water Resources in California's Central Val

  • A new tool for simulating the use and movement of water on the landscape, called “Farm Process”, combined with the USGS MODFLOW groundwater/surface-water model to form a hydrologic model
  • A comprehensive geospatial database developed using a Geographic Information System (GIS)
  • A texture model to characterize the hydraulic properties of the valley-fill materials

California's Central Valley Groundwater Study: A Powerful New Tool to Assess Water Resources in California's Central Val

Farm Process

The complex hydrologic system of the Central Valley is simulated by using the USGS hydrologic model, MODFLOW. Combined with the Farm Process, MODFLOW provides a tool to simulate natural and human-induced water movement and consumption over the landscape. Groundwater and surface-water flow are fully coupled. The model accounts for supply-constrained and demand-driven conjunctive use of water in agricultural, urban, and natural settings. In the Central Valley, the tool simulates unmetered historical pumpage and the delivery of surface water for 21 water-balance regions for water years 1962 to 2003.

Geospatial Database

A comprehensive geospatial database was developed using a Geographic Information System (GIS). The GIS was used to compile, manage, store, and analyze the large quantities of data needed to run the model, and to understand and visualize the data output.

Because the 3D groundwater flow model of the heterogeneous Central Valley aquifer system includes complex surface-water management processes, the GIS is extremely useful for recognizing and understanding spatial relations within and among data sets.

California's Central Valley Groundwater Study: A Powerful New Tool to Assess Water Resources in California's Central Val

California's Central Valley Groundwater Study: A Powerful New Tool to Assess Water Resources in California's Central Val

A geologic texture model was developed to characterize the coarseness of valley-fill materials that make up the aquifer system. Lithologic data from approximately 8,500 drillers’ logs of boreholes ranging in depth from 12 to 3,000 feet below land surface, along with other information, were compiled and analyzed. The resulting geologic model was then used to estimate hydraulic properties for every cell in the model. The texture model is key to understanding how water moves through the Central Valley groundwater system.

California's Central Valley Groundwater Study: A Powerful New Tool to Assess Water Resources in California's Central Val

Land Use 2000

California's Central Valley Groundwater Study: A Powerful New Tool to Assess Water Resources in California's Central Val

Study results show that human activities such as surface-water deliveries and associated groundwater pumping have a dramatic influence on the present-day Central Valley hydrology. These human activities have increased flow through the groundwater system by roughly a factor of six compared to the pre-development period. Regional differences throughout the hydrologic system can be seen in variations in water availability and land use, and in water-delivery systems. These human activities are often in response to spatial and temporal climate variability. —Claudia C. Faunt, Randall T. Hanson,

The San Joaquin Valley, which includes the San Joaquin and Tulare Basins, has experienced large changes in groundwater storage.

The San Joaquin Valley, which includes the San Joaquin and Tulare Basins, has experienced large changes in groundwater storage. In the early 1960s, groundwater pumping caused water levels to decline to historic lows on the west side of the San Joaquin Valley, which resulted in large amounts of surface subsidence. In the late 1960s, the surface-water delivery system began to route water from the wetter Sacramento Valley and Delta regions to the drier, more heavily pumped San Joaquin Valley. The surface-water delivery system was fully functional by the early 1970s, resulting in groundwater-level recovery in the northern and western parts of the San Joaquin Valley. Overall, the Tulare Basin

For more information contact:

Claudia Faunt, Ph.D. Hydrologist ccfaunt@usgs.gov

Reference: Faunt, C.C. ed., 2009, Groundwater Availability of the Central Valley Aquifer: U.S. Geological Survey Professional Paper 1766, 225 p. Available at http://pubs.usgs.gov/pp/1766/Kenneth Belitz, and Laurel Rogers

California Water Science Center 4165 Spruance Road, Suite 200 San Diego, CA 92101

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