Geophysical Research Letters · 2015 · 61 citations · 44 references
Earth ObservationEnvironmental MonitoringEngineeringLiquid Water ContentEarth ScienceGeophysicsSnow AvalanchesSnow CoverHydrometeorologyMeteorologySynthetic Aperture RadarGeographyMicrowave Remote SensingCryosphereRadar ApplicationRadiometryHydrologyRadar ImagingRadarRemote SensingNovel Sensor CombinationSnow Avalanche
Abstract Monitoring seasonal snow cover properties is critical for properly managing natural hazards such as snow avalanches or snowmelt floods. However, measurements often cannot be conducted in difficult terrain or lack the high temporal resolution needed to account for rapid changes in the snowpack, e.g., liquid water content (LWC). To monitor essential snowpack properties, we installed an upward looking ground‐penetrating radar (upGPR) and a low‐cost GPS system below the snow cover and observed in parallel its evolution during two winter seasons. Applying external snow height (HS) information, both systems provided consistent LWC estimates in snow, based on independent approaches, namely measurements of travel time and attenuation of electromagnetic waves. By combining upGPR and GPS, we now obtain a self‐contained approach instead of having to rely on external information such as HS. This allows for the first time determining LWC, HS, and snow water equivalent (SWE) nondestructively and continuously potentially also in avalanche‐prone slopes.
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A physical SNOWPACK model for the Swiss avalanche warning
Michael Lehning, Perry Bartelt, Bob Brown et al. · Cold Regions Science and Technology · 2002 · 656 citations
Geophysics, Meteorology, Glacier +6
A numerical model to simulate snow-cover stratigraphy for operational avalanche forecasting
E. Brun, Pierre‐Marie David, Marcel Sudul et al. · Journal of Glaciology · 1992 · 634 citations · Full text
Glacier, Engineering, Geomorphology +19