International audienceAlthough both the temporal and spatial variations of the snow depth are usually of interest for numerous applications , available measurement techniques are either space-oriented (e.g. terrestrial laser scans) or time-oriented (e.g. ultrasonic ranging probe). Because of snow heterogeneity, measuring depth in a single point is insufficient to provide accurate and representative estimates. We present a cost-effective automatic instrument to acquire spatio-temporal variations of snow depth. The device comprises a laser meter mounted on a 2-axis stage and can scan ≈ 200 000 points over an area of 100–200 m 2 in 4 h. Two instruments, installed in Antarctica (Dome C) and the French Alps (Col de Porte), have been operating co...
Due to the relative lack of empirical field data, the response of very small glaciers (here defined ...
The storage of water within the seasonal snow cover is a substantial source of runoff in high mounta...
Snow in rock faces plays a key role in the alpine environment for permafrost distribution, snow wate...
International audienceAlthough both the temporal and spatial variations of the snow depth are usuall...
ABSTRACT: Knowledge on the spatial and temporal distribution of snow depth is one of the key parame...
This contribution presents an automated terrestrial laser scanning (ATLS) setup, which was used duri...
A permanently installed terrestrial laser scanner (TLS) helps to investigate surface changes at high...
Measurements of surface topography have been performed using a Terrestrial Laser Scanner (VZ-400i, R...
Measurements of surface topography have been performed using a Terrestrial Laser Scanner (VZ-400i, R...
Measurements of surface topography have been performed using a Terrestrial Laser Scanner (VZ-400i, R...
Snow depth measurements are critical in avalanche studies, ecology, snow water equivalent measuremen...
COMInternational audienceSteep slopes represent 35% of Austre Lovén glacier basin, a small valley gl...
ABSTRACT: To understand snow distribution in steep rock walls a high resolution terrestrial laser sc...
This dataset contains snow depth distribution observations obtained in two high mountain experimenta...
Due to the relative lack of empirical field data, the response of very small glaciers (here defined ...
The storage of water within the seasonal snow cover is a substantial source of runoff in high mounta...
Snow in rock faces plays a key role in the alpine environment for permafrost distribution, snow wate...
International audienceAlthough both the temporal and spatial variations of the snow depth are usuall...
ABSTRACT: Knowledge on the spatial and temporal distribution of snow depth is one of the key parame...
This contribution presents an automated terrestrial laser scanning (ATLS) setup, which was used duri...
A permanently installed terrestrial laser scanner (TLS) helps to investigate surface changes at high...
Measurements of surface topography have been performed using a Terrestrial Laser Scanner (VZ-400i, R...
Measurements of surface topography have been performed using a Terrestrial Laser Scanner (VZ-400i, R...
Measurements of surface topography have been performed using a Terrestrial Laser Scanner (VZ-400i, R...
Snow depth measurements are critical in avalanche studies, ecology, snow water equivalent measuremen...
COMInternational audienceSteep slopes represent 35% of Austre Lovén glacier basin, a small valley gl...
ABSTRACT: To understand snow distribution in steep rock walls a high resolution terrestrial laser sc...
This dataset contains snow depth distribution observations obtained in two high mountain experimenta...
Due to the relative lack of empirical field data, the response of very small glaciers (here defined ...
The storage of water within the seasonal snow cover is a substantial source of runoff in high mounta...
Snow in rock faces plays a key role in the alpine environment for permafrost distribution, snow wate...