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portada Hydrogeology and Water Quality of the Floridan Aquifer System and Effects of Lower Floridan Aquifer Pumping on the Upper Floridan Aquifer at Fort Stew
Type
Physical Book
Language
Inglés
Pages
72
Format
Paperback
Dimensions
28.0 x 21.6 x 0.4 cm
Weight
0.19 kg.
ISBN13
9781499574241

Hydrogeology and Water Quality of the Floridan Aquifer System and Effects of Lower Floridan Aquifer Pumping on the Upper Floridan Aquifer at Fort Stew

U. S. Department Of The Interior (Author) · Createspace Independent Publishing Platform · Paperback

Hydrogeology and Water Quality of the Floridan Aquifer System and Effects of Lower Floridan Aquifer Pumping on the Upper Floridan Aquifer at Fort Stew - U. S. Department of the Interior

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Synopsis "Hydrogeology and Water Quality of the Floridan Aquifer System and Effects of Lower Floridan Aquifer Pumping on the Upper Floridan Aquifer at Fort Stew"

Test drilling, field investigations, and digital modeling were completed at Fort Stewart, GA, during 2009-2010, to assess the geologic, hydraulic, and water-quality character-istics of the Floridan aquifer system and evaluate the effect of Lower Floridan aquifer (LFA) pumping on the Upper Floridan aquifer (UFA). This work was performed pursuant to the Georgia Environmental Protection Division interim permitting strategy for new wells completed in the LFA that requires simulation to (1) quantify pumping-induced aquifer leakage from the UFA to LFA, and (2) identify the equivalent rate of UFA pumping that would produce the same maximum drawdown in the UFA that anticipated pumping from LFA well would induce. Field investigation activities included (1) constructing a 1,300-foot (ft) test boring and well completed in the LFA (well 33P028), (2) constructing an observation well in the UFA (well 33P029), (3) collecting drill cuttings and borehole geophysical logs, (4) collecting core samples for analysis of vertical hydraulic conductivity and porosity, (5) conducting flowmeter and packer tests in the open borehole within the UFA and LFA, (6) collecting depth-integrated water samples to assess basic ionic chemistry of various water-bearing zones, and (7) conducting aquifer tests in new LFA and UFA wells to determine hydraulic properties and assess interaquifer leakage. Using data collected at the site and in nearby areas, model simulation was used to assess the effects of LFA pumping on the UFA.

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