The solid-solid contact of rough spherical particles in packed beds takes place by the deformation of individual asperities that transmit the stresses to the main body of the particles. This causes an elastically deformed area (a disk of radius a, most usually much smaller than the particle radius) enclosing the micro-contacts. Micro thermal resistances around the contact spots can be described in terms of a profile of thermal conductance h(r) that decreases toward the disk edge. An additional thermal resistance, the spreading resistance, is caused by the convergence of flux lines in the bulk of the spheres towards the reduced section of the disk. The described mechanism has been modeled by Bahrami et al. (2006) and a formulation was provid...
© 2020 Wenbin FeiThe effective thermal conductivity of granular geomaterials is the one of the most ...
The constriction resistance of a semi-infinite cylinder terminating in the frustum of a cone in a ga...
A discrete element method (DEM) is developed to simulate the heat transfer in granular assemblies in...
There has been a growing interest in porous systems with a smaller length-scale modeling requirement...
New expressions to evaluate the thermal conduction parameters in fixed beds of monosized spheres are...
Thermal contact conductance is an important parameter in a wide range of thermal phenomena, and cons...
A new analytical model is developed for thermal contact resistance (TCR) of nonconforming rough surf...
This work deals with the phenomenon of thermal resistance between contacting solids. Attention is di...
Systems of contacting spheres are common in engineering applications. For such systems, the heat tra...
New expressions to evaluate the thermal conduction parameters in fixed beds of monosized spheres are...
This work deals with phenomena of thermal resistance for metallic surfaces in contact. The main conc...
Among engineering systems requiring heat transfer analyses, spheres in a packing structure is one of...
Point contact models for the effective thermal conductivity of porous media with uniform spherical i...
The effective thermal conductivity is an important parameter that represents the overall heat transf...
The objective of this study is to develop a compact analytical controlling heat transfer modes in th...
© 2020 Wenbin FeiThe effective thermal conductivity of granular geomaterials is the one of the most ...
The constriction resistance of a semi-infinite cylinder terminating in the frustum of a cone in a ga...
A discrete element method (DEM) is developed to simulate the heat transfer in granular assemblies in...
There has been a growing interest in porous systems with a smaller length-scale modeling requirement...
New expressions to evaluate the thermal conduction parameters in fixed beds of monosized spheres are...
Thermal contact conductance is an important parameter in a wide range of thermal phenomena, and cons...
A new analytical model is developed for thermal contact resistance (TCR) of nonconforming rough surf...
This work deals with the phenomenon of thermal resistance between contacting solids. Attention is di...
Systems of contacting spheres are common in engineering applications. For such systems, the heat tra...
New expressions to evaluate the thermal conduction parameters in fixed beds of monosized spheres are...
This work deals with phenomena of thermal resistance for metallic surfaces in contact. The main conc...
Among engineering systems requiring heat transfer analyses, spheres in a packing structure is one of...
Point contact models for the effective thermal conductivity of porous media with uniform spherical i...
The effective thermal conductivity is an important parameter that represents the overall heat transf...
The objective of this study is to develop a compact analytical controlling heat transfer modes in th...
© 2020 Wenbin FeiThe effective thermal conductivity of granular geomaterials is the one of the most ...
The constriction resistance of a semi-infinite cylinder terminating in the frustum of a cone in a ga...
A discrete element method (DEM) is developed to simulate the heat transfer in granular assemblies in...