Local thermal equilibrium (LTE) is a frequently-employed hypothesis when analysing convection heat transfer in porous media. However, investigation of the non-equilibrium phenomenon exhibits that such hypothesis is typically not true for many circumstances such as rapid cooling or heating, and in industrial applications involving immediate transient thermal response, leading to a lack of local thermal equilibrium (LTE). Therefore, for the sake of appropriately conduct the technological process, it has become necessary to examine the validity of the LTE assumption before deciding which energy model should be used. Indeed, the legitimacy of the LTE hypothesis has been widely investigated in different applications and different modes of heat t...
We investigate a problem of convection in local thermal non-equilibrium (LTNE) porous media. This is...
Examination of the thermal equilibrium assumption in the periodic natural convection channel flow is...
Fluid flow in porous media deserves great attention because of its paramount importance both for eng...
Local thermal equilibrium (LTE) is a frequently-employed hypothesis when analysing convection heat t...
Two criteria are used and compared to investigate the local thermal equilibrium assumption in a forc...
In this study, the validity of Local Thermal Equilibrium (LTE) assumption in the transient forced co...
In recent years the industrial applications of porous materials has shown a growing relevance. Most ...
Heat transport in natural porous media, such as aquifers or streambeds, is generally modeled assumin...
International audienceThe process of flow and heat transfer in porous media has been extensively inv...
International audienceAn analytic solution on fully developed forced convection, in parallel plate p...
We investigate a problem of convection in local thermal non-equilibrium (LTNE) porous media. This is...
Accounting for the fact that thermal conductivity of fluid is much less than the thermal conductivit...
The thermo-hydraulic-mechanical (THM) response of low permeable media is of crucial significance in ...
Forced convection of heat in a two-dimensional channel, partially filled by a porous insert is consi...
International audienceThe purpose of this work is to investigate the extents of the local thermal eq...
We investigate a problem of convection in local thermal non-equilibrium (LTNE) porous media. This is...
Examination of the thermal equilibrium assumption in the periodic natural convection channel flow is...
Fluid flow in porous media deserves great attention because of its paramount importance both for eng...
Local thermal equilibrium (LTE) is a frequently-employed hypothesis when analysing convection heat t...
Two criteria are used and compared to investigate the local thermal equilibrium assumption in a forc...
In this study, the validity of Local Thermal Equilibrium (LTE) assumption in the transient forced co...
In recent years the industrial applications of porous materials has shown a growing relevance. Most ...
Heat transport in natural porous media, such as aquifers or streambeds, is generally modeled assumin...
International audienceThe process of flow and heat transfer in porous media has been extensively inv...
International audienceAn analytic solution on fully developed forced convection, in parallel plate p...
We investigate a problem of convection in local thermal non-equilibrium (LTNE) porous media. This is...
Accounting for the fact that thermal conductivity of fluid is much less than the thermal conductivit...
The thermo-hydraulic-mechanical (THM) response of low permeable media is of crucial significance in ...
Forced convection of heat in a two-dimensional channel, partially filled by a porous insert is consi...
International audienceThe purpose of this work is to investigate the extents of the local thermal eq...
We investigate a problem of convection in local thermal non-equilibrium (LTNE) porous media. This is...
Examination of the thermal equilibrium assumption in the periodic natural convection channel flow is...
Fluid flow in porous media deserves great attention because of its paramount importance both for eng...