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Published on: August 9, 2024
Hydrogeophysical methods for analyzing aquifer storage and recovery systems.
Burke J Minsley1, Jonathan Ajo-Franklin, Amitabha Mukhopadhyay
1U.S. Geological Survey, Denver Federal Center, MS964, Denver, CO 80225, USA. bminsley@usgs.gov
This study presents hydrogeophysical methods for aquifer storage and recovery (ASR) systems. Numerical simulations demonstrate how geophysical techniques can monitor ASR performance and optimize site selection for effective water management.
Area of Science:
- Hydrogeology
- Geophysics
- Environmental Engineering
Background:
- Aquifer Storage and Recovery (ASR) systems are crucial for water management, but effective siting and monitoring remain challenging.
- Understanding subsurface responses to ASR operations is key to optimizing system performance and sustainability.
Purpose of the Study:
- To develop and validate hydrogeophysical methods for siting and monitoring ASR systems.
- To provide a quantitative framework for selecting optimal geophysical techniques and data acquisition strategies for ASR projects.
- To simulate and assess the geophysical response to freshwater injection into a saline aquifer.
Main Methods:
- Numerical simulations of coupled fluid flow and solute transport in a Dammam aquifer model.
- Calculation of bulk geophysical properties from petrophysical relationships.
- Simulation of dynamic geophysical responses using electrical resistivity, time-domain electromagnetic (TEM), and seismic methods.
- Investigation of sensitivity to aquifer heterogeneity, dispersivity, and confining layer permeability.
Main Results:
- The study successfully simulated the geophysical response to ASR operations, including changes in fluid salinity and pressure.
- Electrical resistivity, TEM, and seismic methods showed varying sensitivities to subsurface property changes during ASR.
- The framework allows for quantitative assessment of site-specific geophysical monitoring strategies.
Conclusions:
- Hydrogeophysical methods, when integrated with flow and transport simulations, offer a powerful tool for ASR system management.
- The presented simulation strategy enables the optimization of geophysical monitoring for ASR projects.
- This approach supports informed decision-making in the siting and operational phases of ASR systems.
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