Accurate field data have been collected along the Febbraro River (central Italian Alps) during quasi-steady, low-flow conditions to investigate the spatial variations of hydraulic and geomorphologic quantities potentially affecting resistance to flow. Detailed uncertainty analysis and weighted least-squares fitting of simple power function relationships to field-derived data are carried out to identify possible interdependencies between observed variables. Mean flow velocity is found to depend on water-surface slope, bed material particle size, and upstream drainage area, whereas its dependence on hydraulic depth appears less susceptible to quantification. Upstream drainage area is found to explain the variations of hydraulic depth, water-s...
The contribution of groundwater to streamflow in Alpine catchments is still poorly understood, despi...
Detailed measurements of near-surface soil hydraulic conductivity, Ks, across the Bracciasco catchme...
This work focuses on the analysis of hydrological data collected at the hillslope scale during three...
Accurate field data have been collected along the Febbraro River (central Italian Alps) during quasi...
Detailed field measurements of channel properties and flow characteristics collectedin the Ashley an...
Hydraulic conductivity (K) is a relevant engineering geology property of slope deposits overlying th...
We measured velocity and channel geometry in 10 reaches (bed gradient = 0.08\u20130.21) of a predomi...
The paper focuses on the channel network of alpine basins, attempting to interpret channel reaches i...
In order to predict streamflow accurately during extended dry periods, we need to understand the spa...
This study proposes a framework for analysing and quantifying the uncertainty of river flow data. Su...
This study proposes a framework for analysing and quantifying the uncertainty of river flow data. Su...
Accurate knowledge of soil hydraulic properties is of crucial importance for reliable applications o...
The contribution of groundwater to streamflow in Alpine catchments is still poorly understood, despi...
Detailed measurements of near-surface soil hydraulic conductivity, Ks, across the Bracciasco catchme...
This work focuses on the analysis of hydrological data collected at the hillslope scale during three...
Accurate field data have been collected along the Febbraro River (central Italian Alps) during quasi...
Detailed field measurements of channel properties and flow characteristics collectedin the Ashley an...
Hydraulic conductivity (K) is a relevant engineering geology property of slope deposits overlying th...
We measured velocity and channel geometry in 10 reaches (bed gradient = 0.08\u20130.21) of a predomi...
The paper focuses on the channel network of alpine basins, attempting to interpret channel reaches i...
In order to predict streamflow accurately during extended dry periods, we need to understand the spa...
This study proposes a framework for analysing and quantifying the uncertainty of river flow data. Su...
This study proposes a framework for analysing and quantifying the uncertainty of river flow data. Su...
Accurate knowledge of soil hydraulic properties is of crucial importance for reliable applications o...
The contribution of groundwater to streamflow in Alpine catchments is still poorly understood, despi...
Detailed measurements of near-surface soil hydraulic conductivity, Ks, across the Bracciasco catchme...
This work focuses on the analysis of hydrological data collected at the hillslope scale during three...