In this study a gridded hourly 1-km precipitation dataset for a meso-scale catchment (4,062 km2) of the Upper Severn River, UK was constructed using rainfall radar data to disaggregate a daily precipitation (rain gauge) dataset. The dataset was compared to an hourly precipitation dataset created entirely from rainfall radar data. Results found that when assessed against gauge readings and as input to the Lisflood-RR hydrological model, the rain gauge/radar disaggregated dataset performed the best suggesting that this simple method of combining rainfall radar data with rain gauge readings can provide temporally detailed precipitation datasets for calibrating hydrological models.</p
The application of radar-derived precipitation measurements to engineering hydrology is investigated...
This paper provides a comparison of gauge interpolated and radar derived precipitation data sources ...
Rain gauges and weather radars both constitute important devices for operational precipitation monit...
In this study a gridded hourly 1-km precipitation dataset for a meso-scale catchment (4,062 km2) of ...
This paper provides a comparison of gauge and radar precipitation data sources during an extreme hyd...
Raingauges and weather radar are essential sources of rainfall information for hydrological modellin...
Three types of gridded rainfall estimator, based on raingauge and/or radar observations, are conside...
Distributed hydrological modelling using space–time estimates of rainfall from weather radar provide...
Accurate flood modeling is reliant on a well validated hydrologic model balanced with hydraulic mode...
The dense network of 49 raingauges over the 135 km2 Brue catchment in Somerset, England is used to e...
Good quality rainfall data are essential in hydrological modelling and flood forecasting. Classicall...
The capability of radar measured rainfall to enhance the simulation of storm hydrographs was assesse...
Flood prediction systems rely on good quality precipitation input data and forecasts to drive hydrol...
Urban hydrological processes are generally characterised by short response times and therefore rainf...
The performance of a hydrologic model depends on the rainfall input data, both spatially and tempora...
The application of radar-derived precipitation measurements to engineering hydrology is investigated...
This paper provides a comparison of gauge interpolated and radar derived precipitation data sources ...
Rain gauges and weather radars both constitute important devices for operational precipitation monit...
In this study a gridded hourly 1-km precipitation dataset for a meso-scale catchment (4,062 km2) of ...
This paper provides a comparison of gauge and radar precipitation data sources during an extreme hyd...
Raingauges and weather radar are essential sources of rainfall information for hydrological modellin...
Three types of gridded rainfall estimator, based on raingauge and/or radar observations, are conside...
Distributed hydrological modelling using space–time estimates of rainfall from weather radar provide...
Accurate flood modeling is reliant on a well validated hydrologic model balanced with hydraulic mode...
The dense network of 49 raingauges over the 135 km2 Brue catchment in Somerset, England is used to e...
Good quality rainfall data are essential in hydrological modelling and flood forecasting. Classicall...
The capability of radar measured rainfall to enhance the simulation of storm hydrographs was assesse...
Flood prediction systems rely on good quality precipitation input data and forecasts to drive hydrol...
Urban hydrological processes are generally characterised by short response times and therefore rainf...
The performance of a hydrologic model depends on the rainfall input data, both spatially and tempora...
The application of radar-derived precipitation measurements to engineering hydrology is investigated...
This paper provides a comparison of gauge interpolated and radar derived precipitation data sources ...
Rain gauges and weather radars both constitute important devices for operational precipitation monit...