Various factors, such as the volumetric fraction of constituents, mineralogy, and pore fluids, affect heat flow in granular materials. Although the stress applied on granular materials controls the formation of major pathways for heat flow, few studies have focused on a detailed investigation of its significance with regard to the thermal conductivity and anisotropy of the materials. This paper presents a numerical investigation of the stress-induced evolution of anisotropic thermal conductivity of dry granular materials with supplementary experimental results. Granular materials under a variety of stress conditions in element testing are analyzed by the three-dimensional discrete element method, and quantitative variations in their anisotr...
The ability to predict thermal-induced stresses in granular materials is of practical importance acr...
This thesis addresses heat conduction in granular systems both under static and slow flow conditions...
The three-dimensional discrete element method (DEM) was employed to investigate the combined effects...
Thermal conduction in granular materials is mainly dominated by volumetric fraction of constituents,...
International audienceThe anisotropy of granular media and its evolution during shearing are importa...
We investigate the heat transfer through the contact network of a sheared granular material using th...
Estimating the effective thermal conductivity (ETC) of granular materials is important in various en...
Resistance to the heat flow in solid–solid contact areas plays a fundamental role in heat transfer i...
The strain space multiple mechanism model idealizes the behavior of granular materials based on a mu...
In situ planetary thermal conductivity measurements are typically made using a long needle-like prob...
In situ planetary effective thermal conductivity measurements are typically made using a long needle...
Abstract The loading of a granular material induces anisotropies of the particle arrangement (fabric...
Abstract The thermal conductivity of the different soil components—mineral, liquids and air—varies a...
The paper combines experimental and numerical analyses to study the relation between small strain st...
Accurate prediction of the effective thermal properties of partially saturated rock, soil, and other...
The ability to predict thermal-induced stresses in granular materials is of practical importance acr...
This thesis addresses heat conduction in granular systems both under static and slow flow conditions...
The three-dimensional discrete element method (DEM) was employed to investigate the combined effects...
Thermal conduction in granular materials is mainly dominated by volumetric fraction of constituents,...
International audienceThe anisotropy of granular media and its evolution during shearing are importa...
We investigate the heat transfer through the contact network of a sheared granular material using th...
Estimating the effective thermal conductivity (ETC) of granular materials is important in various en...
Resistance to the heat flow in solid–solid contact areas plays a fundamental role in heat transfer i...
The strain space multiple mechanism model idealizes the behavior of granular materials based on a mu...
In situ planetary thermal conductivity measurements are typically made using a long needle-like prob...
In situ planetary effective thermal conductivity measurements are typically made using a long needle...
Abstract The loading of a granular material induces anisotropies of the particle arrangement (fabric...
Abstract The thermal conductivity of the different soil components—mineral, liquids and air—varies a...
The paper combines experimental and numerical analyses to study the relation between small strain st...
Accurate prediction of the effective thermal properties of partially saturated rock, soil, and other...
The ability to predict thermal-induced stresses in granular materials is of practical importance acr...
This thesis addresses heat conduction in granular systems both under static and slow flow conditions...
The three-dimensional discrete element method (DEM) was employed to investigate the combined effects...