Extensive efforts have been made to observe the accumulation and melting of seasonal snow. However, making accurate observations of snow water equivalent (SWE) at global scales is challenging. Active radar systems show promise, provided the dielectric properties of the snowpack are accurately constrained. The dielectric constant (k) determines the velocity of a radar wave through snow, which is a critical component of time-of-flight radar techniques such as ground penetrating radar and interferometric synthetic aperture radar (InSAR). However, equations used to estimate k have been validated only for specific conditions with limited in situ validation for seasonal snow applications. The goal of this work was to further understand the dielec...
Snow water equivalent (SWE) is a measurement of how much water a given snowpack would yield if it wa...
Snow water equivalent (SWE) is a measurement of how much water a given snowpack would yield if it wa...
We present an overview of current state-of-the art measurements and knowledge of dielectric properti...
Radar instruments have been widely used to measure snow water equivalent (SWE) and Interferometric S...
Monitoring the snow water equivalent (SWE) is critical to effective management of water resources in...
Monitoring the snow water equivalent (SWE) is critical to effective management of water resources in...
2020 Summer.Includes bibliographical references.Mountain snowpacks act as seasonal reservoirs, provi...
Radio-echo sounding techniques are very useful for fast profiling of seasonal snowpack. Ground-penet...
Radio-echo sounding techniques are very useful for fast profiling of seasonal snowpack. Ground-penet...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
ABSTRACT: Accurate estimates of snow water equivalent (SWE) are important for mountainous areas wher...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
Gravimetric and dielectric permittivity measurement systems (DMS) are applied to measure snow densit...
Snow water equivalent of a snowpack can be estimated using ground-penetrating radar from the radar w...
Snow water equivalent (SWE) is a measurement of how much water a given snowpack would yield if it wa...
Snow water equivalent (SWE) is a measurement of how much water a given snowpack would yield if it wa...
Snow water equivalent (SWE) is a measurement of how much water a given snowpack would yield if it wa...
We present an overview of current state-of-the art measurements and knowledge of dielectric properti...
Radar instruments have been widely used to measure snow water equivalent (SWE) and Interferometric S...
Monitoring the snow water equivalent (SWE) is critical to effective management of water resources in...
Monitoring the snow water equivalent (SWE) is critical to effective management of water resources in...
2020 Summer.Includes bibliographical references.Mountain snowpacks act as seasonal reservoirs, provi...
Radio-echo sounding techniques are very useful for fast profiling of seasonal snowpack. Ground-penet...
Radio-echo sounding techniques are very useful for fast profiling of seasonal snowpack. Ground-penet...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
ABSTRACT: Accurate estimates of snow water equivalent (SWE) are important for mountainous areas wher...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
Gravimetric and dielectric permittivity measurement systems (DMS) are applied to measure snow densit...
Snow water equivalent of a snowpack can be estimated using ground-penetrating radar from the radar w...
Snow water equivalent (SWE) is a measurement of how much water a given snowpack would yield if it wa...
Snow water equivalent (SWE) is a measurement of how much water a given snowpack would yield if it wa...
Snow water equivalent (SWE) is a measurement of how much water a given snowpack would yield if it wa...
We present an overview of current state-of-the art measurements and knowledge of dielectric properti...