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March 10, 2026Near Surface Geophysics0 citationsOpen Access

Monitoring of water volume in a porous reservoir using seismic data: Validation of a numerical model with a field experiment

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MKMahnaz KhaliliBBBojan BrodicPGPeter Göransson

Key Points

  • The research aims to validate a numerical model for estimating water volume in porous reservoirs using seismic data.
  • Analyzed seismic data from a controlled experimental site in Finland.
  • Employed neural networks to estimate water volume directly from seismic responses.
  • Used a three-dimensional discontinuous Galerkin method for modeling wave propagation.
  • Validated the numerical model against experimental data for accuracy.
  • Improved precision in water volume estimation compared to traditional methods.
  • Contributed to sustainable groundwater management practices.

Abstract

Abstract As global groundwater levels continue to decline rapidly, there is a growing need for advanced techniques to monitor and manage aquifers effectively. This study focuses on validating a numerical model using seismic data from a small‐scale experimental setup designed to estimate water volume in a porous reservoir. Expanding on previous work with synthetic data, we analyse seismic data acquired from a controlled experimental site in Laukaa, Finland. By employing neural networks, we directly estimate water volume from seismic responses, bypassing the traditional need for separate determinations, for example, of reservoir water‐table level and porosity. The study models wave propagation through a coupled poroviscoelastic–viscoelastic medium using a three‐dimensional discontinuous Galerkin method. The proposed methodology is validated against experimental data, aiming to improve precision in mapping current water volumes and contributing to the development of sustainable groundwater management practices.

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Cite This Study

Khalili et al. (2026) studied this question.

synapsesocial.com/papers/69af95ee70916d39fea4e07fhttps://doi.org/10.1002/nsg.70038
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