5 papers
Learning Pore-scale Multiphase Flow from 4D Velocimetry
Chunyang Wang, Linqi Zhu, Yuxuan Gu +9
Multiphase flow in porous media underpins subsurface energy and environmental technologies, including geological CO storage and underground hydrogen storage, yet pore-scale dyn…
DYRECT Computed Tomography: DYnamic Reconstruction of Events on a Continuous Timescale
Wannes Goethals, Tom Bultreys, Steffen Berg +2
Time-resolved high-resolution X-ray Computed Tomography (4D CT) is an imaging technique that offers insight into the evolution of dynamic processes inside materials that are op…
Pore-scale imaging of hydrogen and methane storage in fractured aquifer rock: The impact of gas type on relative permeability
Sojwal Manoorkar, Gülce Kalyoncu, Hamdi Omar +5
Underground hydrogen storage in saline aquifers is a potential solution for seasonal renewable energy storage. Among potential storage sites, facilities used for underground natura…
Inference of microporosity phase properties in heterogeneous carbonate rock with data assimilation techniques
Zhenkai Bo, Ahmed H. Elsheikh, Hannah P. Menke +3
Accurate digital rock modeling of carbonate rocks is limited by the difficulty in acquiring morphological information on small-scale pore structures. Defined as microporosity phase…
Python workflow for segmenting multiphase flow in porous rocks
Catherine Spurin, Sharon Ellman, Dane Sherburn +2
X-ray micro-computed tomography (X-ray micro-CT) is widely employed to investigate flow phenomena in porous media, providing a powerful alternative to core-scale experiments for es…