GNSS atmospheric water vapor monitoring is not yet routinely performed in Italy, particularly at the regional scale. However, in order to support the activities of regional environmental protection agencies, there is a widespread need to improve forecasting of heavy rainfall events. Localized convective rain forecasts are often misplaced in space and/or time, causing inefficiencies in risk mitigation activities. Water vapor information can be used to improve these forecasts. In collaboration with the environmental protection agencies of the Lombardy and Piedmont regions in northern Italy, we have collected and processed GNSS and weather station datasets for two heavy rain events: one which was spatially widespread, and another which was lim...
Studying the spatiotemporal distribution and motion of water vapour (WV), the most variable greenhou...
The Mediterranean region is frequently struck by severe rainfall events causing numerous casualties ...
The availability of atmospheric water vapor content observations, with high temporal and spatial res...
GNSS atmospheric water vapor monitoring is not yet routinely performed in Italy, particularly at the...
[EN] The Spanish Mediterranean area is periodically affected by torrential rainfall events during au...
[EN] For improved water resource management and forecasting of risks associated with hydrological pr...
The impact of assimilating GNSS-ZTD (global navigation satellite system–zenith total delay) on the p...
Studying the spatiotemporal distribution and motion of water vapour (WV), the most variable greenhou...
The paper presents an innovative methodology for monitoring the content of Precipitable Water Vapour...
This study presents an innovative procedure to monitor the precipitable water vapor (PWV) content of...
It is well known that the use of the Global Navigation Satellite Systems (GNSS), both with ground-ba...
Convective rainfall is often focalized in areas of moisture convergence. A close relationship betwee...
Studying the spatiotemporal distribution and motion of water vapour (WV), the most variable greenhou...
The Mediterranean region is frequently struck by severe rainfall events causing numerous casualties ...
The availability of atmospheric water vapor content observations, with high temporal and spatial res...
GNSS atmospheric water vapor monitoring is not yet routinely performed in Italy, particularly at the...
[EN] The Spanish Mediterranean area is periodically affected by torrential rainfall events during au...
[EN] For improved water resource management and forecasting of risks associated with hydrological pr...
The impact of assimilating GNSS-ZTD (global navigation satellite system–zenith total delay) on the p...
Studying the spatiotemporal distribution and motion of water vapour (WV), the most variable greenhou...
The paper presents an innovative methodology for monitoring the content of Precipitable Water Vapour...
This study presents an innovative procedure to monitor the precipitable water vapor (PWV) content of...
It is well known that the use of the Global Navigation Satellite Systems (GNSS), both with ground-ba...
Convective rainfall is often focalized in areas of moisture convergence. A close relationship betwee...
Studying the spatiotemporal distribution and motion of water vapour (WV), the most variable greenhou...
The Mediterranean region is frequently struck by severe rainfall events causing numerous casualties ...
The availability of atmospheric water vapor content observations, with high temporal and spatial res...