Predictive measurement of capillary pressure - saturation relationship of a porous media is obtained based on the actual microstructure obtained from high resolution tomography data. X-ray micro-tomography provided a high contrast for silica phase, and actual geometry of sand particles and void distribution. The morphological opening (erosion + dilation) is used to get a pore size distribution using the concept of granulometry. Full-morphology approach is used to model the quasi-static wetting and non-wetting phase distribution of a primary drainage process. Predicted soil water suction curves for a compacted silica sand sample is presented along with the effects of assumed contact angle between water and silica surface
This paper proposes the use of an algorithm based on the mercury intrusion porosimetry (MIP) method ...
Thesis (Ph.D.), Department of Civil and Environmental Engineering, Washington State UniversityThis s...
International audienceUnderstanding the assemblage of basic grains is essential for predicting many ...
Moisture variation in porous media depends mainly on the pore characteristics. This article used the...
International audienceWater retention in granular soils is a key mechanism for understanding transpo...
This study aims to estimate saturated hydraulic conductivity in a silty loam soil and compare modell...
Water plays a vital role on the hydromechanical behavior of unsaturated soils. An important concern ...
Suffusion is one mechanism of internal erosion, which occurs in gap-graded or broadly graded soils w...
The microporosity structure of soil provides important information in understanding the shear streng...
With continuing evolution of imaging techniques from medical applications and materials science, non...
Three-phase flow in porous media is a common phenomenon in hydrocarbon reservoirs. This study presen...
We demonstrate a simple, cheap method for pore size characterization of porous media that generates ...
This study presents a novel and simple morphology approach to generate two-dimensional air–water dis...
The heterogeneity of soil structure and pore size distribution are highly influenced by external fac...
International audience20 This study aims to estimate saturated hydraulic conductivity in a silty loa...
This paper proposes the use of an algorithm based on the mercury intrusion porosimetry (MIP) method ...
Thesis (Ph.D.), Department of Civil and Environmental Engineering, Washington State UniversityThis s...
International audienceUnderstanding the assemblage of basic grains is essential for predicting many ...
Moisture variation in porous media depends mainly on the pore characteristics. This article used the...
International audienceWater retention in granular soils is a key mechanism for understanding transpo...
This study aims to estimate saturated hydraulic conductivity in a silty loam soil and compare modell...
Water plays a vital role on the hydromechanical behavior of unsaturated soils. An important concern ...
Suffusion is one mechanism of internal erosion, which occurs in gap-graded or broadly graded soils w...
The microporosity structure of soil provides important information in understanding the shear streng...
With continuing evolution of imaging techniques from medical applications and materials science, non...
Three-phase flow in porous media is a common phenomenon in hydrocarbon reservoirs. This study presen...
We demonstrate a simple, cheap method for pore size characterization of porous media that generates ...
This study presents a novel and simple morphology approach to generate two-dimensional air–water dis...
The heterogeneity of soil structure and pore size distribution are highly influenced by external fac...
International audience20 This study aims to estimate saturated hydraulic conductivity in a silty loa...
This paper proposes the use of an algorithm based on the mercury intrusion porosimetry (MIP) method ...
Thesis (Ph.D.), Department of Civil and Environmental Engineering, Washington State UniversityThis s...
International audienceUnderstanding the assemblage of basic grains is essential for predicting many ...