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Regional geomechanical response to large-scale CO 2 storage in the Bunter Sandstone Formation, UK Southern North Sea

Williams, John D.O. ORCID: https://orcid.org/0000-0003-0177-9848; Williams, Gareth A.; Fellgett, Mark W. ORCID: https://orcid.org/0000-0001-7969-0021; Abel, Lucy; Bridger, Paul. 2026 Regional geomechanical response to large-scale CO 2 storage in the Bunter Sandstone Formation, UK Southern North Sea. Geoenergy, 4 (1), geoenergy2025-024. 10.1144/geoenergy2025-024

Abstract

The Bunter Sandstone Formation is the intended storage formation for several commercial CO 2 storage projects in the UK Southern North Sea. Previous studies have highlighted the potential for regional pressure perturbations expected to impact an area far beyond the storage sites where CO 2 will be contained by structural trapping. This study evaluates the potential geomechanical impacts associated with widespread pressurization of saline aquifers, based on a coupled flow–geomechanical modelling study. A published industrial-scale scenario is used as the basis for a reservoir simulation study, which envisages storage of 232 Mt, divided between four sites over a period of 30 years. Several scenarios are considered, with the worst-case scenario resulting in the greatest pressure increases selected for input into a geomechanical model. The results indicate that the saline aquifer is expected to experience only very small strains and gentle uplift of the seabed as a consequence of the modelled injection loads, with minimal risk to containment or other adverse impacts associated with rock failure. The large, well-connected nature of the saline aquifer ameliorates the potentially negative impacts of excessive pressurization. The modelling results suggest that the Bunter Sandstone Formation is an excellent prospect for commercial-scale storage of CO 2 from a geomechanical perspective.

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BGS Programmes 2020 > Decarbonisation & resource management
BGS Programmes 2020 > Digital
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