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Testing of stack-unit/aquifer sensitivity analysis using contaminant plume distribution in the subsurface of Savannah River Site, South Carolina, USA
Authors:James M. Rine  John M. Shafer  Elzbieta Covington  Richard C. Berg
Affiliation:(1) Earth Sciences and Resources Institute, University of South Carolina, Columbia, SC 29208, USA;(2) Present address: OMNI Laboratories, Inc., 8845 Fallbrook Drive, Houston, TX 77064, USA;(3) Illinois State Geological Survey, 615 East Peabody, Champaign, IL 61820, USA
Abstract:Published information on the correlation and field-testing of the technique of stack-unit/aquifer sensitivity mapping with documented subsurface contaminant plumes is rare. The inherent characteristic of stack-unit mapping, which makes it a superior technique to other analyses that amalgamate data, is the ability to deconstruct the sensitivity analysis on a unit-by-unit basis. An aquifer sensitivity map, delineating the relative sensitivity of the Crouch Branch aquifer of the Administrative/Manufacturing Area (A/M) at the Savannah River Site (SRS) in South Carolina, USA, incorporates six hydrostratigraphic units, surface soil units, and relevant hydrologic data. When this sensitivity map is compared with the distribution of the contaminant tetrachloroethylene (PCE), PCE is present within the Crouch Branch aquifer within an area classified as highly sensitive, even though the PCE was primarily released on the ground surface within areas classified with low aquifer sensitivity. This phenomenon is explained through analysis of the aquifer sensitivity map, the groundwater potentiometric surface maps, and the plume distributions within the area on a unit-by- unit basis. The results of this correlation show how the paths of the PCE plume are influenced by both the geology and the groundwater flow.
Keywords:Aquifer sensitivity  Stack-unit mapping  Savannah River Site  Chlorinated hydrocarbons
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