The echo attenuation function EΔ(q) and the displacement probability P(Z,Δ) for water flowing through a bed of 0.3 mm glass beads has been measured by means of Pulsed Gradient Spin Echo (PGSE NMR). The encoding time Δ and the flow rates used in the experiments were chosen such that the average displacement was at least one bead diameter. The EΔ(q) shows, as expected, a diffraction peak at about the inverse of the bead diameter. For longer times EΔ(q) shows another peak at about the inverse of twice the bead diameter. In analogy with PGSE NMR in presence of diffusion in a closed system, these data suggest that the pore space correlation function or features closely related to it, can be accessed through the PGSE experiment with flow. The c...
Porous media are highly prevalent in nature and span a wide range of systems including biological ti...
The determination, by pulsed field gradient (PFG) nuclear magnetic resonance (NMR), of the probabili...
Vita.Multiphase flow in porous media is an important subject in many fields of science and engineeri...
The echo attenuation function EΔ(q) and the displacement probability P(Z,Δ) for water flowing throu...
Advanced nuclear magnetic resonance (NMR) imaging methodologies have been developed to determine por...
The macroscopic properties of porous systems, which are ubiquitous in nature, are determined by thei...
Flow propagators have been frequently used in characterisation of porous media and the study of flui...
The NMR pulsed field gradient spin-echo (PFGSE) amplitude M(k,t) is a direct measure of the diffusio...
The signal obtained with q-space NMR imaging applied to a confined liquid is directly related to the...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Self-diffusion in water, occupying 25% of the pore space within a random packing of 100 μm diameter ...
Pulsed magnetic field gradient spin echo (PGSE) NMR experiments carried out on porous media where fl...
Quantitative flow and diffusion measurements have been made for water in model porous media, using m...
Due to recent activity involving diffusion measurements using pulsed gradient spin echo techniques, ...
We have studied hydrodynamic dispersion in plastic bead packs using the pulsed field gradient (PFG) ...
Porous media are highly prevalent in nature and span a wide range of systems including biological ti...
The determination, by pulsed field gradient (PFG) nuclear magnetic resonance (NMR), of the probabili...
Vita.Multiphase flow in porous media is an important subject in many fields of science and engineeri...
The echo attenuation function EΔ(q) and the displacement probability P(Z,Δ) for water flowing throu...
Advanced nuclear magnetic resonance (NMR) imaging methodologies have been developed to determine por...
The macroscopic properties of porous systems, which are ubiquitous in nature, are determined by thei...
Flow propagators have been frequently used in characterisation of porous media and the study of flui...
The NMR pulsed field gradient spin-echo (PFGSE) amplitude M(k,t) is a direct measure of the diffusio...
The signal obtained with q-space NMR imaging applied to a confined liquid is directly related to the...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Self-diffusion in water, occupying 25% of the pore space within a random packing of 100 μm diameter ...
Pulsed magnetic field gradient spin echo (PGSE) NMR experiments carried out on porous media where fl...
Quantitative flow and diffusion measurements have been made for water in model porous media, using m...
Due to recent activity involving diffusion measurements using pulsed gradient spin echo techniques, ...
We have studied hydrodynamic dispersion in plastic bead packs using the pulsed field gradient (PFG) ...
Porous media are highly prevalent in nature and span a wide range of systems including biological ti...
The determination, by pulsed field gradient (PFG) nuclear magnetic resonance (NMR), of the probabili...
Vita.Multiphase flow in porous media is an important subject in many fields of science and engineeri...