Rock-physics-guided parameterization for efficient Monte Carlo full waveform inversion in CO2 sequestration

dc.contributor.authorMohammadi, Abolfazl Khan
dc.contributor.authorMalcolm, Alison
dc.contributor.authorFarquharson, Colin
dc.date.issued2026-03-17
dc.descriptionPublished
dc.description.abstractSeismic full waveform inversion (FWI) is a powerful tool for monitoring subsurface changes during carbon capture and storage (CCS) operations, but its ill-posed nature makes uncertainty quantification (UQ) essential for reliable interpretation. Sampling-based Bayesian methods such as Markov chain Monte Carlo (McMC) provide rigorous UQ but are computationally demanding. In conventional FWI, elastic properties are assigned to densely discretized space-filling cells, resulting in a high-dimensional parameterization that makes large-scale elastic FWI computationally infeasible. To address this challenge, we propose a rock-physics-guided parameter-reduction strategy that compactly represents the CO2 plume geometry using cubic splines controlled by a limited number of nodes. This parsimonious parameterization not only significantly reduces the number of model parameters and the forward simulations required for an effective UQ using sampling methods but also has the potential to improve the practicality and efficiency of other types of UQ methods. Numerical experiments on a cross-well synthetic scenario and a field-scale case based on the Aquistore storage site in Saskatchewan, Canada, demonstrate that the method efficiently reconstructs the plume shape and its extent and that it converges to consistent posterior distributions across multiple Markov chains.
dc.description.noteThe version available in this research repository is a preprint. Its content does not reflect the peer-review process and it lacks publisher layout and branding.
dc.format.extent35
dc.identifier.doi10.1190/tle-2025-1040
dc.identifier.issn1938-3789
dc.identifier.urihttps://hdl.handle.net/20.500.14783/15905
dc.language.isoen_ca
dc.publisherSociety of Exploration Geophysicists
dc.rights.licensehttp://purl.org/coar/access_right/c_abf2
dc.subjectCO2 sequestration, uncertainty quantification, Monte Carlo methods, full-waveform inversion, parameterization
dc.titleRock-physics-guided parameterization for efficient Monte Carlo full waveform inversion in CO2 sequestration
dc.typeJournal article
mem.campusSt. John's Campus
mem.departmentEarth Sciences
mem.placeOfPubHouston, Texas
mem.refereedYes
oaire.citation.issueThe Leading Edge
oaire.license.conditionhttp://creativecommons.org/licenses/by-nc-nd/4.0/

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