This article is about groundwater recharge facilities. For the film produced in 2000, see The Spreading Ground.
A spreading ground is a water conservation facility that retains surface water long enough for it to percolate into the soil. Spreading grounds must be located where underlying soils are permeable and connected to a target aquifer.[1]
Locating them above silt or clay would prevent the surface water from reaching formations that store water.[2]
While managed aquifer recharge (MAR) projects utilizing storm water and diverted surface water runoff augment groundwater recharge, data suggests that the infiltration capacity of spreading grounds in drought-prone regions is underused due to the seasonality of rainfall.[5] In response, interest is being generated around MAR projects that utilize recycled water to supplement other water sources.[6]Orange County's Groundwater Replenishment System serves as an example of one such system that is combining recycled water and storm water to recharge groundwater through spreading grounds to meet the municipality's annual water needs.[7]
Today, many spreading grounds, which were once considered single-purpose facilities, are being converted to combine municipalities' goals for groundwater recharge with demands for additional recreational opportunities, green space and wildlife habitat. The Dominguez Gap Wetlands in Long Beach, California, which consists of two spreading grounds, is an example of one of these multi-purpose facilities. While the facility's east basin was converted into constructed wetlands (Bixby Marshland (?)), the west basin remains a spreading ground that recharges the local aquifer by an estimated 450-acre feet annually.[8]
^County of Los Angeles Department of Public Works Water Resources Division. Hydrologic Report, 2013−2014; County of Los Angeles Department of Public Works: Los Angeles, 2015.
^Bradshaw, Jonathan L.; Luthy, Richard G. (2017-10-06). "Modeling and Optimization of Recycled Water Systems to Augment Urban Groundwater Recharge through Underutilized Stormwater Spreading Basins". Environmental Science & Technology. 51 (20): 11809–11819. doi:10.1021/acs.est.7b02671. ISSN 0013-936X.
^Landers J. Constructed Wetlands to Improve Los Angeles River's Water Quality. Civil Engineering (08857024) [serial online]. July 2008;78(7):31-33. Available from: GreenFILE, Ipswich, MA. Accessed June 1, 2018.