Global navigation satellite system (GNSS) refractometry enables automated and continuous in situ snow water equivalent (SWE) observations. Such accurate and reliable in situ data are needed for calibration and validation of remote sensing data and could enhance snow hydrological monitoring and modeling. In contrast to previous studies which relied on post-processing with the highly sophisticated Bernese GNSS processing software, the feasibility of in situ SWE determination in post-processing and (near) real time using the open-source GNSS processing software RTKLIB and GNSS refractometry based on the biased coordinate Up component is investigated here. Available GNSS observations from a fixed, high-end GNSS refractometry snow monitoring set...
Monitoring snow variations can know how fast the snow is melted and how much water is frozen on the ...
Moisture content in the soil and snow in the alpine environment is an important factor, not only for...
The amount of liquid water in snow characterizes the wetness of a snowpack. Its temporal evolution p...
Global navigation satellite system (GNSS) refractometry enables automated and continuous in situ sno...
Global Navigation Satellite Systems (GNSS) contribute to various Earth observation applications. Th...
This data is collected for the feasibility study on (near) real-time snow water equivalent (SWE) ret...
An extensive amount of water is stored in snow covers, which has a high impact on flood development ...
The availability of in situ snow water equivalent (SWE), snowmelt and run-off measurements is still ...
Information on snowpack properties is highly relevant for avalanche warning systems, flood predictio...
Remote sensing offers the best prerequisites for obtaining comprehensive information on global snow ...
Snow water equivalent (SWE) is an important variable in describing global seasonal snow cover. Tradi...
Accurate estimates of snow water equivalent (SWE) based on remote sensing have been elusive, particu...
Given the tradeoffs between spatial and temporal resolution, questions about resolution optimality a...
Monitoring of the periglacial environment is relevant for many disciplines including glaciology, nat...
Monitoring snow variations can know how fast the snow is melted and how much water is frozen on the ...
Monitoring snow variations can know how fast the snow is melted and how much water is frozen on the ...
Moisture content in the soil and snow in the alpine environment is an important factor, not only for...
The amount of liquid water in snow characterizes the wetness of a snowpack. Its temporal evolution p...
Global navigation satellite system (GNSS) refractometry enables automated and continuous in situ sno...
Global Navigation Satellite Systems (GNSS) contribute to various Earth observation applications. Th...
This data is collected for the feasibility study on (near) real-time snow water equivalent (SWE) ret...
An extensive amount of water is stored in snow covers, which has a high impact on flood development ...
The availability of in situ snow water equivalent (SWE), snowmelt and run-off measurements is still ...
Information on snowpack properties is highly relevant for avalanche warning systems, flood predictio...
Remote sensing offers the best prerequisites for obtaining comprehensive information on global snow ...
Snow water equivalent (SWE) is an important variable in describing global seasonal snow cover. Tradi...
Accurate estimates of snow water equivalent (SWE) based on remote sensing have been elusive, particu...
Given the tradeoffs between spatial and temporal resolution, questions about resolution optimality a...
Monitoring of the periglacial environment is relevant for many disciplines including glaciology, nat...
Monitoring snow variations can know how fast the snow is melted and how much water is frozen on the ...
Monitoring snow variations can know how fast the snow is melted and how much water is frozen on the ...
Moisture content in the soil and snow in the alpine environment is an important factor, not only for...
The amount of liquid water in snow characterizes the wetness of a snowpack. Its temporal evolution p...