Reconciling predicted and observed carbon mineralization in siliciclastic formations. Chemical Geology, (619):121324, 2023. [PUMA: EXC2075 PN1-13 selected] URL
Anisotropic rate-dependent saturation functions for compositional simulation of sandstone composites. Journal of Petroleum Science and Engineering, (209):109934, 2022. [PUMA: EXC2075 PN1-13 selected] URL
Impact of experimentally measured relative permeability hysteresis on reservoir-scale performance of underground hydrogen storage (UHS). International Journal of Hydrogen Energy, (48)36:13527-13542, 2023. [PUMA: EXC2075 PN1-13 selected] URL
A physics-based model to predict the impact of horizontal lamination on CO2 plume migration. Advances in Water Resources, (150):103881, 2021. [PUMA: EXC2075 PN1-13 selected] URL
A comparative study for H2–CH4 mixture wettability in sandstone porous rocks relevant to underground hydrogen storage. Advances in Water Resources, (163):104165, 2022. [PUMA: EXC2075 PN1-13 selected] URL
Observations of 3-D transverse dispersion and dilution in natural consolidated rock by X-ray tomography. Advances in Water Resources, (96):266-281, 2016. [PUMA: EXC2075 PN1-13 selected] URL
Experimental characterization of H2/water multiphase flow in heterogeneous sandstone rock at the core scale relevant for underground hydrogen storage (UHS). Scientific Reports, (12)1:14604, 2022. [PUMA: EXC2075 PN1-13 selected] URL
Observations of the Impact of MM-Cm Scale Lamination on the Migration and Trapping of CO2 in Reservoir Rocks. Proceedings of the 15th Greenhouse Gas Control Technologies Conference, 15-18, 2021. [PUMA: EXC2075 PN1-13 selected]
Predicting CO2 residual trapping ability based on experimental petrophysical properties for different sandstone types. International Journal of Greenhouse Gas Control, (86):158-176, 2019. [PUMA: EXC2075 PN1-13 selected] URL
Microfluidics-based analysis of dynamic contact angles relevant for underground hydrogen storage. Advances in Water Resources, (164):104221, 2022. [PUMA: EXC2075 PN1-13 selected] URL
Observations of the impact of rock heterogeneity on solute spreading and mixing. Water Resources Research, (53)6:4624-4642, John Wiley & Sons, Ltd, Juni 2017. [PUMA: EXC2075 PN1-13 selected] URL
Modelling CO2 plume spreading in highly heterogeneous rocks with anisotropic, rate-dependent saturation functions: A field-data based numeric simulation study of Otway. International Journal of Greenhouse Gas Control, (119):103699, 2022. [PUMA: EXC2075 PN1-13 selected] URL