Important

We're planning improvements to this service. Help us learn what to change by completing a short survey.

Search results

Filter by

Remove filters

7 results found

Scaling Properties of Fluid Flow in Fractured Rocks

PROJECT DETAILS ONLY - NO DATA. This proposal is to test the hypothesis that secondary (crack) porosity can be treated as a scaling problem in both fracture and fluid percolation theory. This will...

Coastal Physiographic Features - Coastal Lagoons

This shapefile shows the distribution of the Annex I habitat, coastal lagoons around the UK. Coastal lagoons are areas of shallow, coastal salt water, wholly or partially separated from the sea by...

Modelling Porosity Development and Flow in Heterogeneous Media

PROJECT DETAILS ONLY - NO DATA. The aim of the proposed project is to study evolution in the spatial characteristic of coupled flow and porosity development in heterogeneous porous media. We will...

Fully Determined Fluid Velocity Fields for Complex 2D Media with Multi-Scaled Heterogeneity

PROJECT DETAILS ONLY - NO DATA. This project will use the techniques of stereolithography and PIV directly to measure the fluid velocity field in complex, 2D, geologically realistic media with...

Supporting data for the paper 'Small-scale capillary heterogeneity linked to rapid plume migration during CO2 storage' by S.J. Jackson and S. Krevor 2020 (NERC Grant NE/N016173/1)

Supporting data for the paper 'Small-scale capillary heterogeneity linked to rapid plume migration during CO2 storage'. We supply experimental, analytical and numerical simulation data used in the...

3D Reservoir Models of the Endurance proposed CCS storage site in the UK incorporating the upscaled impact of capillary heterogeneity

Rock heterogeneity can lead to the variation of capillary pressure within a reservoir, also termed ‘capillary heterogeneity’. Research has found that this capillary heterogeneity can lead to...

Scales of preservation and root causes of mantle heterogeneities in the Iapetan Ocean convecting upper mantle NERC grant NE/J00457X/1

Although the terrestrial mantle comprises ~80 vol.% of our planet, its compositional architecture is not well understood despite the importance such knowledge holds for constraining Earth's thermal...