The interpretation of nuclear magnetic resonance (NMR) data is of interest in a number of fields. In Ögren (2014) local boundary conditions for random walk simulations of NMR relaxation in digital domains were presented. Here, we have applied those boundary conditions to large, three-dimensional (3D) porous media samples. We compared the random walk results with known solutions and then applied them to highly structured 3D domains, from images derived using synchrotron radiation CT scanning of North Sea chalk samples. As expected, there were systematic errors caused by digitalization of the pore surfaces so we quantified those errors, and by using linear local boundary conditions, we were able to significantly improve the output. We also pr...
Nuclear magnetic resonance (NMR) measurements are widely used to quantify storage and fluid-transpor...
Pore-pore relaxation exchange experiments are a recent development and hold great promise to spectra...
Interpretation of Nuclear Magnetic Resonance (NMR) measurements in complex rocks such as shaly sands...
The interpretation of nuclear magnetic resonance (NMR) data is of interest in a number of fields. In...
We narrow the gap between simulations of nuclear magnetic resonance dynamics on digital do...
The work presented in this thesis introduces a novel Monte Carlo simulation algorithm designed to re...
Rock properties are usually predicted using 3D images of the rockÂ’s microstructure. While single-ph...
The random walk method is used to simulate magnetization decay in porous media. The simulations were...
In this work, the aim is to assess the relative import ance of the impact of diffusio...
High resolution micro-X-ray-CT data is used as a "gold standard" to define the morphology of a numbe...
International audienceNuclear magnetic resonance (NMR) diffusion simulations with surface relaxation...
In this thesis the Monte Carlo translational diffusion simulation method is used to calculate 1H (wa...
NMR is a popular logging technique used to estimate pore size information, formation permeability, w...
Nuclear magnetic resonance logging is an important formation detection technique in the petroleum in...
Advanced nuclear magnetic resonance (NMR) imaging methodologies have been developed to determine por...
Nuclear magnetic resonance (NMR) measurements are widely used to quantify storage and fluid-transpor...
Pore-pore relaxation exchange experiments are a recent development and hold great promise to spectra...
Interpretation of Nuclear Magnetic Resonance (NMR) measurements in complex rocks such as shaly sands...
The interpretation of nuclear magnetic resonance (NMR) data is of interest in a number of fields. In...
We narrow the gap between simulations of nuclear magnetic resonance dynamics on digital do...
The work presented in this thesis introduces a novel Monte Carlo simulation algorithm designed to re...
Rock properties are usually predicted using 3D images of the rockÂ’s microstructure. While single-ph...
The random walk method is used to simulate magnetization decay in porous media. The simulations were...
In this work, the aim is to assess the relative import ance of the impact of diffusio...
High resolution micro-X-ray-CT data is used as a "gold standard" to define the morphology of a numbe...
International audienceNuclear magnetic resonance (NMR) diffusion simulations with surface relaxation...
In this thesis the Monte Carlo translational diffusion simulation method is used to calculate 1H (wa...
NMR is a popular logging technique used to estimate pore size information, formation permeability, w...
Nuclear magnetic resonance logging is an important formation detection technique in the petroleum in...
Advanced nuclear magnetic resonance (NMR) imaging methodologies have been developed to determine por...
Nuclear magnetic resonance (NMR) measurements are widely used to quantify storage and fluid-transpor...
Pore-pore relaxation exchange experiments are a recent development and hold great promise to spectra...
Interpretation of Nuclear Magnetic Resonance (NMR) measurements in complex rocks such as shaly sands...