This paper proposes the use of an algorithm based on the mercury intrusion porosimetry (MIP) method to obtain the water retention characteristic curve (pF curve) of a soil under different treatments. 3D X-ray micro-tomographic images were used to quantify pore size distribution, which was employed for the evaluation of the water retention in different matric potentials. The results showed very good agreement between the traditional method (obtained by suction tables) and that one based on the MIP algorithm. It means that the use of simulation procedures can be an interesting alternative for the measurement of soil water retention properties
Mass and energy flow processes in soil are strongly dependent on the state of the soil structure and...
Understanding the dynamics of water distribution in soil is crucial for enhancing our knowledge of m...
International audienceWater retention in granular soils is a key mechanism for understanding transpo...
858-863This paper proposes the use of an algorithm based on the mercury intrusion porosimetry (MIP) ...
The soil water retention curve is one of the most important properties used to predict the amount of...
Soil structure controls soil hydraulic properties and is linked to soil aggregation processes. The a...
International audienceSoil structure, especially the soil pore size distribution, is a fundamental p...
International audienceIt is well-known that a close link exists between soil-water retention curve (...
peer reviewedX-ray microtomography, through quantification of soil structure at the microscale, coul...
This work aims to compare the retention curve and microCT methods to assess the total, macro and mic...
We demonstrate the application of a high-resolution X-ray Computed Tomography (CT) method to quantif...
We demonstrate the application of a high-resolution X-ray Computed Tomography (CT) method to quantif...
Agricultural management practices influence soil structure, but the characterization of these modifi...
For decades, the development of new visualization techniques has brought incredible insights into ou...
The heterogeneity of soil structure and pore size distribution are highly influenced by external fac...
Mass and energy flow processes in soil are strongly dependent on the state of the soil structure and...
Understanding the dynamics of water distribution in soil is crucial for enhancing our knowledge of m...
International audienceWater retention in granular soils is a key mechanism for understanding transpo...
858-863This paper proposes the use of an algorithm based on the mercury intrusion porosimetry (MIP) ...
The soil water retention curve is one of the most important properties used to predict the amount of...
Soil structure controls soil hydraulic properties and is linked to soil aggregation processes. The a...
International audienceSoil structure, especially the soil pore size distribution, is a fundamental p...
International audienceIt is well-known that a close link exists between soil-water retention curve (...
peer reviewedX-ray microtomography, through quantification of soil structure at the microscale, coul...
This work aims to compare the retention curve and microCT methods to assess the total, macro and mic...
We demonstrate the application of a high-resolution X-ray Computed Tomography (CT) method to quantif...
We demonstrate the application of a high-resolution X-ray Computed Tomography (CT) method to quantif...
Agricultural management practices influence soil structure, but the characterization of these modifi...
For decades, the development of new visualization techniques has brought incredible insights into ou...
The heterogeneity of soil structure and pore size distribution are highly influenced by external fac...
Mass and energy flow processes in soil are strongly dependent on the state of the soil structure and...
Understanding the dynamics of water distribution in soil is crucial for enhancing our knowledge of m...
International audienceWater retention in granular soils is a key mechanism for understanding transpo...