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Dye tracing dataset for Big Creek watershed, Newton County, Arkansas

Dates

Publication Date
Start Date
2020-10-13
End Date
2020-12-11

Citation

Miller, B.V., Bitting, C.J., and Colton, R., 2022, Seepage investigation and dye tracing to characterize base flow stream behavior in Big Creek watershed, Newton County, Arkansas: U.S. Geological Survey data release, https://doi.org/10.5066/P97T4C52.

Summary

This data release pertains to a seepage investigation and dye tracing study conducted in the Big Creek watershed of Newton County, Arkansas. The dye tracing dataset consists of geospatial files of monitoring sites, dye injection location, and dye flow paths. Hydrologic systems in karst environments have a high degree of interconnectivity between surface water and groundwater systems. Because of this interconnectivity, activities which occur on the surface in karst environments have a direct impact on the water quality and quantity of karst groundwater. The Ozark Plateaus Physiographic region (Ozarks) of northern Arkansas and southern Missouri is an extensive karst area where many of the karst flow systems are recharged via losing [...]

Contacts

Point of Contact :
Benjamin V Miller
Process Contact :
Benjamin V Miller
Originator :
Benjamin V Miller, Charles J Bitting, Riannon Colton
Metadata Contact :
Benjamin V Miller
Publisher :
U.S. Geological Survey
Distributor :
U.S. Geological Survey - ScienceBase

Attached Files

Click on title to download individual files attached to this item.

Dye Traces.zip 1.02 MB application/zip
20201015_184606.jpg
“Photo of fluorescein dye injection 10/15/2020, Photo by Ben Miller, USGS”
thumbnail 5.19 MB image/jpeg
Extension: Dye_Traces.zip
thumbnail.png thumbnail 1.88 KB

Purpose

This study was conducted by the U.S. Geological Survey in cooperation with the National Park Service to characterize flow conditions of Big Creek and Left Fork of Big Creek (tributaries of the Buffalo National River) during base flow conditions. The data release includes a seepage investigation of discharge measurements and zero-flow observations to determine losing and gaining stream reaches and a dye trace in the downstream losing reach to identify karst flowpaths.

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