Snow at or close to the surface commonly undergoes temperature gradient metamorphism under advective flow, which alters its microstructure and physical properties. Time-lapse X-ray microtomography is applied to investigate the structural dynamics of temperature gradient snow metamorphism exposed to an advective airflow in controlled laboratory conditions. Cold saturated air at the inlet was blown into the snow samples and warmed up while flowing across the sample with a temperature gradient of around 50 K m<sup>−1</sup>. Changes of the porous ice structure were observed at mid-height of the snow sample. Sublimation occurred due to the slight undersaturation of the incoming air into the warmer ice matrix. Diffusion of water vapor opposite to...
Abstract: Dry snow metamorphism has traditionally been classified by the thermal gradient encountere...
In this study on temperature gradient metamorphism in snow, we investigate the hypothesis that there...
International audienceRepresenting snow equi-temperature metamorphism (ETM) is key to model the evol...
Snow at or close to the surface commonly undergoes temperature gradient metamorphism under advective...
International audienceA simple physical model describing the temperature-gradient metamorphism of sn...
We performed X-ray microtomographic observations of wet-snow metamorphism during controlled continuo...
Snow is a highly porous medium consisting of an ice matrix and porous space containing water vapor. ...
We carried out a study to monitor the time evolution of microstructural and physical properties of s...
An instrumented sample holder was developed for time-lapse microtomography of snow samples to enable...
The deposition of light-absorbing particles (LAPs) such as mineral dust and black carbon on snow is ...
The main objective of the thesis is to improve our understanding of faceting occuring in dry snow me...
International audienceAbstract. The deposition of light-absorbing particles (LAPs) such as mineral d...
International audienceOnce fallen, snow settles due to the combined effects of metamorphism and defo...
Snow is a highly porous medium consisting of an ice matrix and porous space containing water vapor. ...
Abstract: Dry snow metamorphism has traditionally been classified by the thermal gradient encountere...
In this study on temperature gradient metamorphism in snow, we investigate the hypothesis that there...
International audienceRepresenting snow equi-temperature metamorphism (ETM) is key to model the evol...
Snow at or close to the surface commonly undergoes temperature gradient metamorphism under advective...
International audienceA simple physical model describing the temperature-gradient metamorphism of sn...
We performed X-ray microtomographic observations of wet-snow metamorphism during controlled continuo...
Snow is a highly porous medium consisting of an ice matrix and porous space containing water vapor. ...
We carried out a study to monitor the time evolution of microstructural and physical properties of s...
An instrumented sample holder was developed for time-lapse microtomography of snow samples to enable...
The deposition of light-absorbing particles (LAPs) such as mineral dust and black carbon on snow is ...
The main objective of the thesis is to improve our understanding of faceting occuring in dry snow me...
International audienceAbstract. The deposition of light-absorbing particles (LAPs) such as mineral d...
International audienceOnce fallen, snow settles due to the combined effects of metamorphism and defo...
Snow is a highly porous medium consisting of an ice matrix and porous space containing water vapor. ...
Abstract: Dry snow metamorphism has traditionally been classified by the thermal gradient encountere...
In this study on temperature gradient metamorphism in snow, we investigate the hypothesis that there...
International audienceRepresenting snow equi-temperature metamorphism (ETM) is key to model the evol...