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EDWARDS AQUIFER EVALUATION: KINNEY COUNTY, TEXAS

Authors :
Kaveh Khorzad
Source :
Journal of the American Water Resources Association. 39:1093-1107
Publication Year :
2003
Publisher :
Wiley, 2003.

Abstract

The Edwards Aquifer is one of the most studied and most prolific aquifers in the United States. The aquifer is a heavily fractured and faulted carbonate aquifer with transmissivities in excess of 100 ft2/s. The City of San Antonio relies upon the Edwards Aquifer as its sole source for water. Much work has been done on quantifying recharge to the aquifer and discharge from wells and acquiring aquifer characteristics from pumping tests, specific capacity tests, and geophysical logs. Although the aquifer has been well studied in Bexar County, much less is known about the Edwards Aquifer in Kinney County. This is partly due to the lower population within the county (approximately 3,500 people) relative to the eastern counties (Uvalde, Medina, Bexar, Comal, and Hays) and the great distance of Kinney County from high profile discharge areas such as the City of San Antonio and Comal and San Marcos Springs. Three key products resulted from this study: (1) exploratory well drilling and the largest aquifer test in the county that were conducted to evaluate the well yields within a 10,000 acre study area in which a drawdown of 2.5 ft approximately 1.2 miles away was observed while pumping at approximately 4,600 gpm; (2) a recharge estimate for the Edwards Aquifer within Kinney County of approximately 71,382 ac-ft/yr; and (3) locating the Brackettville Groundwater Divide from an evaluation of ground water flow direction and hydrograph analysis. These results help evaluate the complex hydraulics occurring within Kinney County and aid in development of ground water modeling that will be used in managing the Edwards Aquifer.

Details

ISSN :
17521688 and 1093474X
Volume :
39
Database :
OpenAIRE
Journal :
Journal of the American Water Resources Association
Accession number :
edsair.doi...........5c5284ca239d8f80d3f290453622a5c1
Full Text :
https://doi.org/10.1111/j.1752-1688.2003.tb03695.x