The temporal and spatial distribution of water within a porous medium is affected by the medium¿s structure, i.e., the spatial arrangement of its constituents. To analyze structural effects on the fluid dynamics, we measured the 3D water content distribution in a heterogeneous sand column during two drainage-wetting cycles using neutron transmission tomography. The sample with a volume of 105 cm3 contained 101 cubes of fine and 49 cubes of coarse sand with particles ranging from 0.01 to 0.05 and 0.03 to 0.09 cm, respectively. The pressure at the lower boundary was determined by the water reservoir positioned between 7 and 39 cm below the top of the column. The duration of one complete 3D scanning with a spatial resolution of 127 ¿m was 56 s...
Water flow in unsaturated tight sandstones plays a significant role in the area of the secondary and...
Understanding the mechanical behaviour of porous rocks and how this influences the fluid flow is key...
Knowledge of micrometer scale wetting layers and microporosity in rocks is crucial for a deeper unde...
The temporal and spatial distribution of water within a porous medium is affected by the medium¿s st...
Capillary imbibition in variably saturated porous media is important in defining displacement proces...
AbstractA ponded infiltration experiment was conducted under simultaneous imaging to investigate var...
Abstract: The use of neutron imaging is demonstrated for visualizing and quantifying water distribut...
The behaviour of subsurface-reservoir porous rocks is a central topic in the resource engineering in...
The behaviour of subsurface-reservoir porous rocks is a central topic in the resource engineering in...
In situ imaging of water flow through compacted silica sand is performed with neutron radiography an...
The behaviour of subsurface reservoir porous rocks is a central topic in the resource engineering in...
We present the first study of fluid distribution inside porous media imaged by neutron tomography. W...
This paper summarizes the key concepts from the recent published work of the authors on using both ...
The textural and geometrical properties of the pore networks (i.e., such as pore size distribution, ...
A new approach to characterise the evolution and coupling of deformation and fluid flow in geomateri...
Water flow in unsaturated tight sandstones plays a significant role in the area of the secondary and...
Understanding the mechanical behaviour of porous rocks and how this influences the fluid flow is key...
Knowledge of micrometer scale wetting layers and microporosity in rocks is crucial for a deeper unde...
The temporal and spatial distribution of water within a porous medium is affected by the medium¿s st...
Capillary imbibition in variably saturated porous media is important in defining displacement proces...
AbstractA ponded infiltration experiment was conducted under simultaneous imaging to investigate var...
Abstract: The use of neutron imaging is demonstrated for visualizing and quantifying water distribut...
The behaviour of subsurface-reservoir porous rocks is a central topic in the resource engineering in...
The behaviour of subsurface-reservoir porous rocks is a central topic in the resource engineering in...
In situ imaging of water flow through compacted silica sand is performed with neutron radiography an...
The behaviour of subsurface reservoir porous rocks is a central topic in the resource engineering in...
We present the first study of fluid distribution inside porous media imaged by neutron tomography. W...
This paper summarizes the key concepts from the recent published work of the authors on using both ...
The textural and geometrical properties of the pore networks (i.e., such as pore size distribution, ...
A new approach to characterise the evolution and coupling of deformation and fluid flow in geomateri...
Water flow in unsaturated tight sandstones plays a significant role in the area of the secondary and...
Understanding the mechanical behaviour of porous rocks and how this influences the fluid flow is key...
Knowledge of micrometer scale wetting layers and microporosity in rocks is crucial for a deeper unde...