Ground-Water Discharges to Biscayne Bay

Metadata:


Identification_Information:
Citation:
Citation_Information:
Originator: Christian Langevin
Publication_Date: unpublished material
Title: Ground-Water Discharges to Biscayne Bay
Publication_Information:
Publication_Place:
Publisher:
Online_Linkage:
Description:
Abstract:
Several surveys during the late 19th and early 20th centuries describe the occurrence of large quantities of ground-water flow to Biscayne Bay by way of underground channels or conduits. The construction of the drainage and flood-control network in southeastern Florida began during the early 20th century for the purpose of managing the water resources of the area. This drainage canal network affected the hydrologic pattern in southeastern Florida by replacing sheetflow with canal flow, thereby significantly reducing the altitude of the water table and diminishing ground-water flow to Biscayne Bay. This led to the inland movement of the saltwater interface. In 1960, there was still ground water discharging to the bottom of Biscayne Bay, but no quantification of the amount of ground-water discharges to the bay was made at the time. In 1967, discharges to the bay in the Cutler Ridge area were estimated by assuming Darcian flow and considering the tidal cycle. It was estimated that 210 cubic feet per square foot of flow section area was discharged during a 12.5-hour tidal cycle.

The U.S. Army Corps of Engineers (COE) is planning to construct gated spillways and culverts to allow for the restoration of natural sheetflow conditions to Everglades National Park (ENP). These proposed changes may further affect the hydrologic conditions of ENP and other parts of the ecosystem, thus leading to the following questions: (1) Is ground water flowing to Biscayne Bay a significant component of the water budget in south Florida?

(2) Would the quantity of ground water flowing to Biscayne Bay be greatly affected by changes in the operation of gates and control structures in canals?

(3) How much change in ground-water discharges to Biscayne Bay has occurred due to modifications to the hydrologic system?

Quantification of ground water flowing to Biscayne Bay is needed as input to two interagency projects: the South Florida Ecosystem Restoration Program and the Biscayne Bay Feasibility Study. The principal objective of the Biscayne Bay Feasibility Study is to investigate ongoing construction/dredging projects and propose solutions to alleviate adverse factors that affect the bay and to aid in the development of guidelines for future management of the natural resources of Biscayne Bay. The Biscayne Bay Feasibility Study includes the implementation of a surface- water circulation model which will be developed by the Waterway Experi- mental Station of the COE. Quantification of ground-water discharges to Biscayne Bay is needed as input to the bay water circulation model.

Purpose:
The objectives of this project are to define the geohydrologic character- istics of the surficial aquifer system in parts of Biscayne Bay and apply numerical modeling techniques to estimate ground-water discharges to the bay. An assessment will also be made describing the potential effects of some water-management operations in canal and water-conservation areas on the rates of ground-water discharges to Biscayne Bay.
Supplemental_Information:
Time_Period_of_Content:
Time_Period_Information:
Range_of_Dates/Times:
Beginning_Date: 199606
Ending_Date: 1999
Currentness_Reference: publication date
Status:
Progress: in work
Maintenance_and_Update_Frequency: as needed
Spatial_Domain:
Bounding_Coordinates:
West_Bounding_Coordinate: -80.63
East_Bounding_Coordinate: -80.12
North_Bounding_Coordinate: 25.90
South_Bounding_Coordinate: 25.12
Keywords:
Theme:
Theme_Keyword_Thesaurus: none
Theme_Keyword: ground-water discharge
Theme_Keyword: water budget
Theme_Keyword: flow models
Place:
Place_Keyword_Thesaurus: none
Place_Keyword: Biscayne Bay
Place_Keyword: Dade County
Place_Keyword: South Florida
Place_Keyword: South East Coast
Place_Keyword: Florida Keys
Access_Constraints: None. Raw data may need revisions.
Use_Constraints: None.
Point_of_Comments and suggestions? Contact:
Contact_Information:
Contact_Person_Primary:
Contact_Person: Christian Langevin
Contact_Organization: U.S. Geological Survey
Contact_Position: Project Chief
Contact_Address:
Address_Type: mailing address
Address: 9100 NW 36th Street Suite 107
City: Miami
State_or_Province: FL
Postal_Code: 33178
Contact_Voice_Telephone: 305 717 5817
Contact_Facsimile_Telephone: 305 717 5801
Contact_Electronic_Mail_Address: langevin@usgs.gov
Browse_Graphic:
Browse_Graphic_File_Name:
Browse_Graphic_File_Description:
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Data_Quality_Information:
Logical_Consistency_Report: not available
Completeness_Report: not available
Positional_Accuracy:
Horizontal_Positional_Accuracy:
Horizontal_Positional_Accuracy_Report: not available
Lineage:
Process_Step:
Process_Description:
Data compiled during this project will include the collection of water- level data, core samples, and water-quality data (especially chloride and specific conductance data) from observation wells and test holes. The wells and test holes will be drilled and installed offshore and nearshore in an attempt to define the freshwater-saltwater mixing zone and the nature, location, and quantity of ground-water flow to Biscayne Bay.

Core samples will be collected and analyzed to determine the geologic and hydrogeologic characteristics of the subsurface material underlying the bay and near the coast. Gamma and electromagnetic induction resistivity logs will be run at selected wells to aid in the determina- tion of the geohydrologic horizons and the definition of salinity profiles.

Cores were obtained and monitor wells were installed at 29 sites along three transects in Biscayne Bay in 1996. An additional 12 cores and wells are planned onshore during 1997.

A model analysis will be performed to further define the saltwater- freshwater mixing zone and to estimate ground-water flow to Biscayne Bay. A preliminary ground-water flow model and a refined model will be used for the analysis. Some historical and seasonal simulations (including near predevelopment conditions) will be performed. Additionally, an attempt will be made with the model to estimate the location of the saltwater-freshwater zone.

A preliminary ground-water flow model will be constructed using the SWIP code as modified by Merritt in 1994. The model solves ground-water flow equations accounting for fluid density and viscosity dependence on temporal changes of pressure, temperature, and solute transport. Density changes are important because the differences in density between the fresh ground water and the saline bay water affect flow and water levels. Data from an existing ground-water flow model, which includes most of Dade County from Tamiami Trail south, will be transferred to the new proposed model grid using a geographic information system (GIS).

The existing southern Dade County model is a comprehensive model that subdivides the surficial aquifer in four layers (one layer is used to represent overland flow) and considers the effects of rainfall, evapo- transpiration, canal water levels, canal control structures, areal and vertical changes in permeability, aquifer thickness, production wells, and tidal boundaries. All of the parameters from the southern Dade County model to be used in the southwestern part of the preliminary model will also be generated for the northern and northeastern parts of the model grid using GIS technology. Hydrogeologic data from the southern Dade County model will be extrapolated to the area of the grid that covers Biscayne Bay. For purposes of this preliminary model, the boundary conditions used will be constant head or pressure, whichever is determined to be appropriate for the steady-state simulation. Water- level data from wells, canals, and tidal gage sites will be used to represent the boundaries. This preliminary model will be used to select the locations for drilling test holes and observation wells and provide an initial estimate of ground-water flow to Biscayne Bay.

Data collected from the new wells will be used to test and refine the model calibration. The boundary conditions for the refined model will be represented using time-varying water levels in wells, canals, and tidal gate sites that will be converted to pressure values using a correction for density of the different model layers and water salinities. A sensitivity analysis will be performed, focusing on how the variation of the model parameters will affect ground-water flow to Biscayne Bay.

Process_Date: not complete
Process_Comments and suggestions? Contact:
Contact_Information:
Contact_Person_Primary:
Contact_Person: Christian Langevin
Contact_Organization: U.S. Geological Survey
Contact_Position: Project Chief
Contact_Address:
Address_Type: mailing address
Address: 9100 NW 36th Street Suite 107
City: Miami
State_or_Province: FL
Postal_Code: 33178
Contact_Voice_Telephone: 305 717 5817
Contact_Facsimile_Telephone: 305 717 5801
Contact_Electronic_Mail_Address: langevin@usgs.gov

Distribution_Information:
Distributor:
Contact_Information:
Contact_Person_Primary:
Contact_Person: Christian Langevin
Contact_Organization: U.S. Geological Survey
Contact_Position: Project Chief
Contact_Address:
Address_Type: mailing address
Address: 9100 NW 36th Street Suite 107
City: Miami
State_or_Province: FL
Postal_Code: 33178
Contact_Voice_Telephone: 305 717 5817
Contact_Facsimile_Telephone: 305
Contact_Electronic_Mail_Address: langevin@usgs.gov
Resource_Description:
Distribution_Liability: The data have no implied or explicit guarantees.

Metadata_Reference_Information:
Metadata_Date: 19981016
Metadata_Comments and suggestions? Contact:
Contact_Information:
Contact_Person_Primary:
Contact_Person: Jo Anne Stapleton
Contact_Organization: U.S. Geological Survey
Contact_Address:
Address_Type: mailing address
Address: 521 National Center
City: Reston
State_or_Province: VA
Postal_Code: 20192
Contact_Voice_Telephone: 703 648 4592
Contact_Facsimile_Telephone: 703 648 4614
Contact_Electronic_Mail_Address: jastapleton@usgs.gov
Metadata_Standard_Name: FGDC Content Standard for Digital Geospatial Metadata
Metadata_Standard_Version:
FGDC-STD-001-1998


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