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Hydraulics of Wetlands: Monitoring and Modeling Emily Spargo
University of Wisconsin-Platteville REU Advisors: Drs. Kolar, Nairn, & Strevett
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Report Overview Wetland Hydrology Tracer Test Modeling Conclusions
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The Big Question What is the hydraulic residence time of the water moving through the wetland, and how can I most effectively model the flow?
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Wetland Hydrology ? ? ? ? ? Complex Systems Few Models Inputs
Surface & below ground flow Few Models First in 1970’s Vary for specific type of wetland ? ? ? ? ?
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Tracer Test Mechanics of a Tracer Test Bromide Input Sample
Break-through curve Bromide conservative easy to measure non-toxic
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Site Map
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Data Collection & Analysis
8-day sampling period Hand and ISCO samples Bromide Ion Selective Electrode Analysis
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Modeling Zero Order Model INPUT OUTPUT BLACK BOX
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Modeling First Order Model Second Order Model INPUT OUTPUT INPUT
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Our Model BLACK BOX Groundwater model Step Injection Parameters:
Velocity Dispersion Tracer concentration after mixing
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Site 1 velocity = 0.35 m/min. dispersion coefficient = 0.2 m2/min
Field data Model velocity = 0.35 m/min. dispersion coefficient = 0.2 m2/min
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Site 2 velocity = 0.01 m/min. dispersion coefficient = 0.5 m2/min
Field data Model velocity = 0.01 m/min. dispersion coefficient = 0.5 m2/min
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Site 3 velocity = 0.001 m/min. dispersion = 3 m2/min.
Field data velocity = m/min. dispersion = 3 m2/min. Model Field data Model velocity = m/min. dispersion1 = 13 m2/min. dispersion2 = 2.5 m2/min.
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Conclusions ????? Trends: Residence Times: Average velocity decreases
Dispersion increases Reasonable trends Residence Times: Site 1 = 25.7 minutes Site 2 = 3.8 days Site 3 = days ?????
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Future Research MORE TIME MORE MONEY Complete tracer study
Increase model complexity MORE MONEY Purchase reliable equipment Increase pay for REU students
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Acknowledgements Dr. Kolar Dr. Nairn Dr. Strevett
Denae, Danette, Jake, Jessica, Kim, & Todd NSF Grant # EEC
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