Porosity and Formation Factor in Coastal Sands: Micro-CT Insights into Grain-Scale Controls and Clay Influence

Mohammed Ali Garba *

Department of Geology, Gombe State University, Gombe, Nigeria.

*Author to whom correspondence should be addressed.


Abstract

An experimental and micro-computed tomography (micro-CT) study of the relationship between porosity and electrical formation factor (FF) is presented for a suite of coastal sands. Beach sands from Scarborough and Cottesloe (Western Australia) were analysed to determine bulk porosity, electrical transport behaviour, grain- and pore-scale structure, and the possible effects of clay on conductivity. Clean sands had laboratory packing porosities of 0.26–0.44. Formation factors ranged from approximately 3.96 to 8.54 in flow-cell experiments and from 4.0 to 6.9 in static-cell experiments. Micro-CT-derived porosity ranged from approximately 0.25 to 0.46, whereas finite-element-derived formation factor ranged from approximately 3.8 to 10.1, depending on cube size and microstructural heterogeneity. An Archie-type inverse relationship between formation factor and porosity was observed in the laboratory and digital datasets. Porosity and formation factor became less variable and approached laboratory-scale behaviour over cube sizes of 500³–700³ voxels, suggesting practical REV behaviour at this scale; however, the limited number of independent 700³ realisations warrants cautious interpretation. Clay-bearing samples showed higher formation factors and slower electrical stabilisation, consistent with possible clay-related interfacial effects and heterogeneous pore geometry, although the specific contribution of surface conduction was not independently demonstrated. Overall, the combined laboratory and micro-CT approach provides complementary information for understanding pore-scale controls on electrical transport in unconsolidated coastal sediments and for hydrogeophysical characterisation of coastal aquifers.

Keywords: Porosity, formation factor, micro-computed tomography, coastal sands, pore connectivity, grain packing, microstructural heterogeneity, clay content, electrical transport, representative elementary volume


How to Cite

Garba, Mohammed Ali. 2026. “Porosity and Formation Factor in Coastal Sands: Micro-CT Insights into Grain-Scale Controls and Clay Influence”. Asian Journal of Geological Research 9 (3):1074-91. https://doi.org/10.9734/ajoger/2026/v9i3293.

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