Vacuum Insulation Panel (VIP) can achieve very low thermal conductivity by evacuating its inner space. Heat transfer in the core materials of highly-evacuated VIP occurs by conduction through the solid structure and radiation through the pore. The effect of various scattering modes in combined conduction-radiation in VIP is investigated through numerical analysis. The discrete ordinates interpolation method (DOIM) incorporated with the commercial code FLUENT® is employed. It is found that backward scattering is more effective in reducing the total heat transfer while isotropic scattering is almost identical with pure absorbing/emitting case of the same optical thickness. For a purely scattering medium, the results agrees well with additive ...
In this work published mathematical models describing heat transfer mechanisms through porous materi...
An approximate analytic solution is provided for the unsteady radiative heating of a highly scatteri...
International audienceIn this contribution, the extraordinarily high level of thermal insulation pro...
The zonal method, together with the concept of generic exchange factor, is shown to be an efficient ...
The authors develop slim and light-weight vacuum insulation panels (VIPs) by producing vacuum layers...
The authors develop slim and light-weight vacuum insulation panels (VIPs) by producing vacuum layers...
In the present paper, a numerical model combining radiation and conduction for porous materials is d...
A first-principle approach is used to analyze combined conductive/radiative heat transfer in a high ...
This paper reports the theoretical investigation of radiative heat transfer through the ultra-fine p...
The theory of heat transfer through low density insulating materials explains the importance of ther...
Porous media heat transfer has long been investigated and studied in many of the years, regarding to...
Vacuum insulation panel (VIP) is a promising thermal insulator for buildings, refrigerator, LNG carr...
AbstractIn the present paper, a numerical model combining radiation and conduction for porous materi...
ABSTRACT: Although vacuum insulation panels (VIPs) are thermal insulators with very low center-of-pa...
In recent years advanced insulating materials presenting very low thermal conductivity or dynamic pr...
In this work published mathematical models describing heat transfer mechanisms through porous materi...
An approximate analytic solution is provided for the unsteady radiative heating of a highly scatteri...
International audienceIn this contribution, the extraordinarily high level of thermal insulation pro...
The zonal method, together with the concept of generic exchange factor, is shown to be an efficient ...
The authors develop slim and light-weight vacuum insulation panels (VIPs) by producing vacuum layers...
The authors develop slim and light-weight vacuum insulation panels (VIPs) by producing vacuum layers...
In the present paper, a numerical model combining radiation and conduction for porous materials is d...
A first-principle approach is used to analyze combined conductive/radiative heat transfer in a high ...
This paper reports the theoretical investigation of radiative heat transfer through the ultra-fine p...
The theory of heat transfer through low density insulating materials explains the importance of ther...
Porous media heat transfer has long been investigated and studied in many of the years, regarding to...
Vacuum insulation panel (VIP) is a promising thermal insulator for buildings, refrigerator, LNG carr...
AbstractIn the present paper, a numerical model combining radiation and conduction for porous materi...
ABSTRACT: Although vacuum insulation panels (VIPs) are thermal insulators with very low center-of-pa...
In recent years advanced insulating materials presenting very low thermal conductivity or dynamic pr...
In this work published mathematical models describing heat transfer mechanisms through porous materi...
An approximate analytic solution is provided for the unsteady radiative heating of a highly scatteri...
International audienceIn this contribution, the extraordinarily high level of thermal insulation pro...