Related Experiment Video
Updated: May 16, 2025

Dynamic Pore-scale Reservoir-condition Imaging of Reaction in Carbonates Using Synchrotron Fast Tomography
Published on: February 21, 2017
Geochemistry at a Karst Spring Reveals Complex Stormflow Dynamics in an Eogenetic Karst Aquifer
Patricia Spellman, Andrea Pain1, Sunhye Kim2
1University of Maryland Center for Environmental Science, Cambridge, MD, 21613.
This study analyzed stormflow in the Floridan Aquifer System (FAS) after Hurricane Idalia, finding two distinct nitrate-nitrogen (NO3-N) pulses, one mobilizing NO3-N for over 19 days, highlighting complex karst aquifer dynamics.
Area of Science:
- Hydrogeology
- Environmental Science
- Karst Geomorphology
Background:
- The Floridan Aquifer System (FAS) is a complex, eogenetic karst aquifer with unique porosity and cave networks.
- Understanding flow dynamics and residence times is crucial for water resource management in the FAS.
- Stormflow in eogenetic karst aquifers, particularly after extreme weather events, remains understudied.
Purpose of the Study:
- To investigate stormflow dynamics in the eogenetic FAS following Hurricane Idalia.
- To analyze the geochemical and hydrological responses to hurricane-induced rainfall.
- To assess the impact of karst characteristics on stormflow chemistry and residence times.
Main Methods:
- In-situ sensor data (NO3-N, specific conductance, discharge) collected at 15-min intervals.
- Grab sampling for water isotopes and major element chemistry.
- Analysis of stormflow pulses and their geochemical signatures.
Main Results:
- At least two distinct stormflow pulses were identified through NO3-N and geochemical analysis.
- One pulse showed dilution of NO3-N, while another mobilized NO3-N, persisting for at least 19 days.
- Stormflow pulses amplified existing seasonal NO3-N trends, indicating complex interactions.
Conclusions:
- Eogenetic karst characteristics significantly influence stormflow dynamics and residence times in the FAS.
- The carbonate bedrock matrix plays a critical role in controlling stormflow behavior.
- Findings are vital for refining water resource strategies in karst aquifer systems.
Related Concept Videos
Conservation of Mass in Moving, Nondeforming Control Volume
In the context of a detention basin, the conservation of mass states that the total mass of water entering the basin must equal the mass leaving the basin plus any accumulation of...
Gradually Varying Flow
Rapidly Varying Flow
Energy Considerations in Open Channel Flow
The Phosphorus Cycle

