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publications > paper > ground water recharge and discharge in the central everglades > references

Ground Water Recharge and Discharge in the Central Everglades

References

Abstract
Introduction
Study Sites
Methods
Results
Discussion
Acknowledgments
>References
PDF version
Anderson, M.P., and W.W. Woessner. 1992. Applied Groundwater Modeling: Simulation of Flow and Advective Transport. San Diego: Academic Press.

Barlow, P.M., and A.F. Moench. 1998. Analytical solutions and computer programs for hydraulic interaction of streamaquifer systems. U.S. Geological Survey Open-File Report 98-415A.

Brand, E.W., and J. Premchitt. 1980. Shape factors of cylindrical piezometers. Geotechnique 30, 369-384.

Brinson, M.M., H.D. Bradshaw, and R.N. Holmes. 1983. Significance of floodplain sediments in nutrient exchange between a stream and its floodplain. In Dynamics of Lotic Ecosystems, 199-221. Ann Arbor, Michigan: Ann Arbor Science.

Chin, D.A. 1990. A method to estimate canal leakage to the Biscayne aquifer, Dade County, Florida. U.S. Geological Survey Water-Resources Investigations Report 90-4135.

Choi, J., and J.W. Harvey. 2000. Quantifying time-varying groundwater discharge and recharge in wetlands: A comparison of methods in the Florida Everglades. Wetlands 20, no. 3: 500-511.

Fennema, R.J., C.J. Neidrauer, R.A. Johnson, T.K. MacVicar, and W.A. Perkins. 1994. Computer model to simulate natural Everglades hydrology. In Everglades: The Ecosystem and Its Restoration, ed. S.M. Davis and J.C. Ogden, 249-290. Boca Raton, Florida: St Lucie Press.

Fish, J.E. 1988. Hydrogeology, aquifer characteristics, and ground water flow of the surficial aquifer system, Broward County, Florida. U.S. Geological Survey Water-Resources Investigations Report 87-4034.

Genereux, D., and E. Slater. 1999. Water exchange between canals and surrounding aquifer and wetlands in the southern Everglades, U.S.A. Journal of Hydrology 219, 153-168.

Gerla, P.J., and R.K. Matheney. 1996. Seasonal variability and simulation of ground water flow in a prairie wetland. Hydrological Processes 10, no. 7: 903-920.

Gleason, P.J., and P. Stone. 1994. Age, origin, and landscape evolution of the Everglades peatland. In Everglades: The Ecosystem and Its Restoration, ed. S.M. Davis and J.C. Ogden, 149-198. Boca Raton, Florida: St Lucie Press.

Harvey, J.W., and W.K. Nuttle. 1995. Fluxes of water and solute in a coastal wetland sediment, 2. Effect of macropores on solute exchange with surface water. Journal of Hydrology 164, no. 1-4: 109-125.

Harvey, J.W., S.L. Krupa, C. Gefvert, J. Choi, R.H. Mooney, and J.B. Giddings. 2000. Interaction between ground water and surface water in the northern Everglades and relation to water budget and mercury cycling: Study methods and appendixes. U.S. Geological Survey Open-File Report 00-168.

Harvey, J.W., S.L. Krupa, C. Gefvert, R.H. Mooney, J. Choi, S.A. King, and J.B. Giddings. 2002. Interaction between surface water and ground water and effects on mercury transport in the north-central Everglades. U.S. Geological Survey Water-Resources Investigations Report 02-4050.

Howie, B. 1987. Chemical characteristics of water in the surficial aquifer system, Broward County, Florida. U.S. Geological Survey Water-Resources Investigations Report 86-4330.

Hunt, R.J., J.F. Walker, and D.P. Krabbenhoft. 1999. Characterizing hydrology and the importance of ground water discharge in natural and constructed wetlands. Wetlands 19, no. 2: 458-472.

Jensen, J.R., K. Rutchey, M.S. Koch, and S. Narumalani. 1995. Inland wetland change detection in the Everglades Water Conservation Area 2A using a time series of normalized remotely sensed data. Photogrammetric Engineering and Remote Sensing 61, no. 2: 199-209.

Klein, H., and C.B. Sherwood. 1961. Hydrologic conditions in the vicinity of levee 30, northern Dade County, Florida. Florida Bureau of Geology Report of Investigations no. 24.

Lee, D.R. 1977. A device for measuring seepage flux in lakes and estuaries. Limnology and Oceanography 22, 140-147.

Light, S.S., and J.W. Dineen. 1994. Water control in the Everglades -A historical perspective. In Everglades: The Ecosystem and Its Restoration, ed. S.M. Davis and J.C. Ogden, 47-84. Boca Raton, Florida: St Lucie Press.

Luthin, J.N., and D. Kirkham. 1949. A piezometer method for measuring permeability of soil in-situ below a water table. Soil Science 68, 349-358.

Miller, W.L. 1978. Effect of bottom sediments on infiltration from the Miami and tributary canals to the Biscayne aquifer, Dade County, Florida. U.S. Geological Survey Water- Resources Investigations Report 78-36.

Miller, W.L. 1988. Description and evaluation of the effects of urban and agricultural development on the surficial aquifer system, Palm Beach County, Florida. U.S. Geological Survey Water-Resources Investigations Report 88-4056.

Nemeth, M.S., and H.M. Solo-Gabriele. 2001. Evaluation of the use of reach transmissivity to quantify exchange between groundwater and surface water. Journal of Hydrology 274, 145-159.

Nuttle, W.K., and H.F. Hemond. 1988. Salt marsh hydrology: Implications for biogeochemical fluxes to the atmosphere and estuaries. Global Biogeochemical Cycles 2, no. 2: 91-114.

Perkins, R.D. 1977. Depositional framework of Pleistocene rocks in south Florida. In Quaternary Sedimentation in South Florida: Geological Society of America Memoir 147, ed. P. Enos and R.D. Perkins, 131-196. Boulder, Colorado: Geological Society of America Inc.

Price, R.M.. J.D. Happell, Z. Top, and P.K. Swart. 2003. Use of tritium and helium to define groundwater flow conditions in Everglades National Park. Water Resources Reseach 39, no. 9: 1267-1280.

Reeve, A.S., D.I. Siegel, and P.H. Glaser. 2000. Simulating vertical flow in large peatlands. Journal of Hydrology 227, no. 1-4: 207-217.

Rohrer, K.P. 1999. Hydrogeological characterization and estimation of ground water seepage in the Everglades nutrient removal project. SFWMD WRE-372.

Romanowicz, E., and C.J. Richardson. 2000. Modeling hydroperiods and flooding depths in the northern Everglades, Water Conservation Area 2A. In INTECOL VI: Millennium Wetland Event and 21st Annual Meeting of the Society of Wetland Scientists, August 6-12, Quebec City, Program with Abstracts, 324. International Association of Ecology.

Siegel, D.I. 1983. Ground water and the evolution of patterned mires, Glacial Lake Agassiz peatlands, northern Minnesota. Journal of Ecology 71, 913-921.

Sonenshein, R.S. 2001. Methods to quantify seepage beneath levee 30, Miami-Dade County, Florida. U.S. Geological Survey Water-Resources Investigations Report 01-4074.

SFWMD. 1999. A primer to the South Florida Water Management Model (version 3.5). http://www.sfwmd.gov/org/pld/hsm/models/sfwmm/v3.5/wmmpdf.htm.

Swayze, L.J. 1988. Ground-water flow beneath levee 35A from Conservation Area 2B, Broward County, Florida. U.S. Geological Survey Water-Resources Investigations Report 87-4280.

Tarboton, K.C., C.J. Neidrauer, E.R. Santee, and J.C. Needle. 1999. Regional hydrologic modeling for planning the management of South Florida's water resources through 2050. American Society of Agricultural Engineers paper no. 992062.

Tavenas, F., M. Diene, and S. Leroueil. 1990. Analysis of the in situ constant-head permeability test in clays. Canadian Geotechnical Journal 27, 305-314.

Thibodeaux, L.J. 1996. Environmental Chemodynamics: Movement of Chemicals in Air, Water, and Soil. New York: John Wiley and Sons.

Tobias, C.R., J.W. Harvey, and I.C. Anderson. 2001. Quantifying ground water discharge through fringing wetlands to estuaries: Seasonal variability, methods comparison, and implications for wetland-estuary exchange. Limnology and Oceangraphy 46, no. 3: 604-615.

Urban, N.M., S.M. Davis, and N.G. Aumen. 1993. Fluctuations in saw grass and cattail densities in Everglades Water Conservation Area 2A under varying nutrient, hydrologic and fire regimes. Aquatic Botany 46: 203-233.

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