Exploring how Sentinel-1 wet-snow maps can inform fully distributed physically based snowpack models

B Cluzet, J Magnusson, L Quéno, G Mazzotti… - The …, 2024‏ - tc.copernicus.org
Distributed energy and mass balance snowpack models at sub-kilometric scale have
emerged as a tool for snow-hydrological forecasting over large areas. However, their …

openAMUNDSEN v1. 0: an open-source snow-hydrological model for mountain regions

U Strasser, M Warscher, E Rottler… - Geoscientific Model …, 2024‏ - gmd.copernicus.org
Abstract openAMUNDSEN (the open source version of the Alpine MUltiscale Numerical
Distributed Simulation ENgine) is a fully distributed snow-hydrological model, designed …

High-resolution hydrometeorological and snow data for the Dischma catchment in Switzerland

J Magnusson, Y Bühler, L Quéno… - Earth System …, 2025‏ - essd.copernicus.org
We present an hourly hydrometeorological and snow dataset with 100 m spatial resolution
from the alpine Dischma watershed and its surroundings in eastern Switzerland, including …

Evaluation of high-resolution snowpack simulations from global datasets and comparison with Sentinel-1 snow depth retrievals in the Sierra Nevada, USA

L Sourp, S Gascoin, L Jarlan, V Pedinotti… - Hydrology and Earth …, 2025‏ - hess.copernicus.org
The spatial distribution of mountain snow water equivalent (SWE) is key information for
water management. We implement a tool to simulate snowpack properties at high resolution …

[HTML][HTML] Evaluating methods to estimate the water equivalent of new snow from daily snow depth recordings

J Magnusson, B Cluzet, L Quéno, R Mott… - Cold Regions Science …, 2025‏ - Elsevier
The water equivalent of new snow (HNW) plays a crucial role in various fields, including
hydrological modeling, avalanche forecasting, and assessing snow loads on structures …