Water flow in a sandstone sample is studied during an experiment in situ in a neutron tomography setup. In this paper, a projection-based methodology for fast tracking of the imbibition front in 3D is presented. The procedure exploits each individual neutron 2D radiograph, instead of the tomographic-reconstructed images, to identify the 4D (space and time) saturation field, offering a much higher time resolution than more standard reconstruction-based methods. Based on strong space and time regularizations of the fluid flow, with an a priori defined space and time shape functions, the front shape is identified at each projection time step. This procedure aiming at a fast tracking the fluid advance is explored through two examples. The first...
In situ imaging of water flow through compacted silica sand is performed with neutron radiography an...
The challenge of understanding how localized deformation modifies fluid flow in porous rock is addre...
- High speed neutron tomography (1 minute) of imbibition process into deformed sample<div><div>- Wat...
High speed neutron tomographies 1 min acquisition have been acquired during water invasion into a...
The study of fluid flow through solid matter by computed tomography (CT) imaging has many applicatio...
The study of fluid flow through solid matter by computed tomography (CT) imaging has many applicatio...
AbstractNeutron imaging, in general, is a useful technique for visualizing low-Z materials (such as ...
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...
Understanding fluid flow through rocks is of key interest in hydrocarbon production and CO(2) seques...
- High speed neutron tomography (1 minute) of imbibition process into deformed sample<div>- Water Fr...
Understanding fluid flow through rocks is of key interest in hydrocarbon product...
Computed tomography has become a routine method for probing processes in porous media, and the use o...
A new approach to characterise the evolution and coupling of deformation and fluid flow in geomateri...
This thesis describes the measurement technique of fast-neutron tomography for assessing spatial dis...
In situ imaging of water flow through compacted silica sand is performed with neutron radiography an...
The challenge of understanding how localized deformation modifies fluid flow in porous rock is addre...
- High speed neutron tomography (1 minute) of imbibition process into deformed sample<div><div>- Wat...
High speed neutron tomographies 1 min acquisition have been acquired during water invasion into a...
The study of fluid flow through solid matter by computed tomography (CT) imaging has many applicatio...
The study of fluid flow through solid matter by computed tomography (CT) imaging has many applicatio...
AbstractNeutron imaging, in general, is a useful technique for visualizing low-Z materials (such as ...
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...
Understanding fluid flow through rocks is of key interest in hydrocarbon production and CO(2) seques...
- High speed neutron tomography (1 minute) of imbibition process into deformed sample<div>- Water Fr...
Understanding fluid flow through rocks is of key interest in hydrocarbon product...
Computed tomography has become a routine method for probing processes in porous media, and the use o...
A new approach to characterise the evolution and coupling of deformation and fluid flow in geomateri...
This thesis describes the measurement technique of fast-neutron tomography for assessing spatial dis...
In situ imaging of water flow through compacted silica sand is performed with neutron radiography an...
The challenge of understanding how localized deformation modifies fluid flow in porous rock is addre...
- High speed neutron tomography (1 minute) of imbibition process into deformed sample<div><div>- Wat...