HR: 0800h
AN: H31C-0384 INVITED [Abstracts]
TI: The Suwannee River Hydrologic Observatory: A Subtropical Coastal Plain Watershed in
Transition
AU: * Graham, W D
EM: wgraham@ufl.edu
AF: University of Florida, PO Box 110570, Gainesville, FL 32611
United States
AB:
The Consortium of Universities for the Advancement of Hydrologic Sciences (CUAHSI) proposed to establish a network of 5-15
hydrologic observatories (HO's) across North America is to support fundamental research for the hydrologic science community
into the next century. These HO's are projected to be 10,000 to 50,000 km2 and will include a broad range of hydrologic,
climatic, bio-geochemical and ecosystem processes, including the critical linkages and couplings. This network is envisioned
as the natural laboratory for experimental hydrology in support of scientific investigations focused on predictive
understanding at a scale that will include both atmospheric- and ecosystem-hydrologic interaction, as well as the hydrologic
response to larger-scale climate variation and change. A group of researchers from Florida and Georgia plan to propose the
Suwannee River watershed as a Hydrologic Observatory.
The Suwannee River flows through a diverse watershed relatively unimpacted by urbanization but in transition to more intense
land-use practices. It thus provides excellent opportunities to study the effects of ongoing changes in land use and water
supply on varied hydrological processes. Much background information is available on the hydrology, hydrogeology, geology,
chemistry, and biology of the watershed. Several major on-going monitoring programs are supported by state and federal
agencies. Four characteristics, discussed in greater detail below, make the Suwannee River watershed ideal for a Hydrologic
Observatory:
Unregulated and rural - The Suwannee River is one of few major rivers in the United States with largely unregulated flow
through rural areas and is relatively unimpaired with regard to water quality, leading to its designation as one of twelve
National Showcase Watersheds.
At Risk and in Transition - Land use is trending toward increased urbanization and intensive agriculture with an apparent
coupled increase in nutrient loads and decline in water quality. In addition, population growth is fueling increased
groundwater withdrawals from the Floridan aquifer for local consumption affecting water supply. Inter-basin transfers from
the lower Suwannee River to south Florida have been suggested as one solution to south Florida's growing water crisis.
Three Distinct Hydrologic Regimes - The Suwannee River watershed comprises three distinct but linked hydrologic landscape
units. The upper Suwannee River interacts with the surficial aquifer but is largely separated from the Floridan aquifer by a
confining unit. The middle Suwannee River interacts with both surficial aquifers and the unconfined karstic Floridan
aquifer. The lower Suwannee River discharges to a deltaic estuary as surface water along with diffuse submarine groundwater
discharge.
Extensive Existing Data Infrastructure - Some discharge data exists from the turn of the 19th century to the present. More
recently, the USDA Agricultural Research Service through the Southeast Watershed Research Laboratory (SEWRL) has monitored
the Little River watershed in Georgia at the headwaters of the Suwannee River since 1965, and the Suwannee River Water
Management District (SRWMD) has monitored the Suwannee River watershed in Florida since 1972. Other groups (USGS, Suwannee
River Partnership, and individual university investigators) have long worked on specific, local geological, hydrological, and
biological problems within the watershed.
Contributing Organizations: University of Florida, Florida State University, University of South Florida, University of
Central Florida, University of Georgia, USGS, USDA, and SRWMD
UR: http://www.clas.ufl.edu/users/jmartin/Prospectus.pdf
DE: 1899 General or miscellaneous
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting