Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characterize available the water from the snow cover is the well-known snow water equivalent (SWE). This paper presents a near-surface-based radar for determining the SWE from the measured complex spectral reflectance of the snowpack. The method is based in a stepped-frequency continuous wave radar (SFCW), implemented in a coherent software defined radio (SDR), in the range from 150 MHz to 6 GHz. An electromagnetic model to solve the electromagnetic reflectance of a snowpack, including the frequency and wetness dependence of the complex relative dielectric permittivity of snow layers, is shown. Using the previous model, an approximated method to calc...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
One of the most important parameters for accurate snowmelt runoff prediction is snow water equivalen...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
A ground-based step frequency continuous wave radar (SFCW), based in a software defined radio (SDR),...
A ground-based step frequency continuous wave radar (SFCW), based in a software defined radio (SDR),...
A ground-based step frequency continuous wave radar (SFCW), based in a software defined radio (SDR),...
Determining snow water equivalent (SWE) in a fast and nondestructive way is a key request for many h...
Snow accounts for the majority of precipitation in many areas of the Western United States, and accu...
Forecasting snow avalanche danger in mountainous regions is of major importance for the protection o...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
One of the most important parameters for accurate snowmelt runoff prediction is snow water equivalen...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
Snow makes a great contribution to the hydrological cycle in cold regions. The parameter to characte...
A ground-based step frequency continuous wave radar (SFCW), based in a software defined radio (SDR),...
A ground-based step frequency continuous wave radar (SFCW), based in a software defined radio (SDR),...
A ground-based step frequency continuous wave radar (SFCW), based in a software defined radio (SDR),...
Determining snow water equivalent (SWE) in a fast and nondestructive way is a key request for many h...
Snow accounts for the majority of precipitation in many areas of the Western United States, and accu...
Forecasting snow avalanche danger in mountainous regions is of major importance for the protection o...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
Snow water equivalent (SWE) of annual snowpacks is of major importance for Scandinavian hydropower...
One of the most important parameters for accurate snowmelt runoff prediction is snow water equivalen...