Dry snow metamorphism, involved in several topics related to cryospheric sciences, is mainly linked to heat and water vapor transfers through snow including sublimation and deposition at the ice–pore interface. In this paper, the macroscopic equivalent modeling of heat and water vapor transfers through a snow layer was derived from the physics at the pore scale using the homogenization of multiple scale expansions. The microscopic phenomena under consideration are heat conduction, vapor diffusion, sublimation, and deposition. The obtained macroscopic equivalent model is described by two coupled transient diffusion equations including a source term arising from phase change at the pore scale. By dimensional analysis, it was shown that the in...
The process of heat transfer in snow is important in such fields of snow science as snow avalanches,...
International audienceThe surface area of snow that is accessible to gases is an essential parameter...
Understanding the process by which snow vaporizes without melting helps explain many interesting phe...
The main objective of the thesis is to improve our knowledge about dry snow metamorphismand its phys...
International audienceWater vapor transport in dry snowpacks plays a significant role for snow metam...
International audienceAbstract. Heat transport in snowpacks is understood to occur through the two p...
L’objectif général de la thèse est de contribuer à l’amélioration de nos connaissances sur les métam...
Snow is a highly porous medium consisting of an ice matrix and porous space containing water vapor. ...
Snow is a highly porous medium consisting of an ice matrix and porous space containing water vapor. ...
International audienceA simple physical model describing the temperature-gradient metamorphism of sn...
[1] A multiscale methodology for the determination of the macroscopic optical properties of snow is ...
This thesis is an in-depth treatment of water vapor transport in snowpacks and its impacts on snow s...
International audienceRepresenting snow equi-temperature metamorphism (ETM) is key to model the evol...
The process of heat transfer in snow is important in such fields of snow science as snow avalanches,...
International audienceThe surface area of snow that is accessible to gases is an essential parameter...
Understanding the process by which snow vaporizes without melting helps explain many interesting phe...
The main objective of the thesis is to improve our knowledge about dry snow metamorphismand its phys...
International audienceWater vapor transport in dry snowpacks plays a significant role for snow metam...
International audienceAbstract. Heat transport in snowpacks is understood to occur through the two p...
L’objectif général de la thèse est de contribuer à l’amélioration de nos connaissances sur les métam...
Snow is a highly porous medium consisting of an ice matrix and porous space containing water vapor. ...
Snow is a highly porous medium consisting of an ice matrix and porous space containing water vapor. ...
International audienceA simple physical model describing the temperature-gradient metamorphism of sn...
[1] A multiscale methodology for the determination of the macroscopic optical properties of snow is ...
This thesis is an in-depth treatment of water vapor transport in snowpacks and its impacts on snow s...
International audienceRepresenting snow equi-temperature metamorphism (ETM) is key to model the evol...
The process of heat transfer in snow is important in such fields of snow science as snow avalanches,...
International audienceThe surface area of snow that is accessible to gases is an essential parameter...
Understanding the process by which snow vaporizes without melting helps explain many interesting phe...