In formerly glaciated mountain settings, Pleistocene glaciations are responsible for profound spatial reorganization of the landscape structure. By imposing local channel slope and the degree of hillslope-channel connectivity, glacial macro-forms can exert first-order controls on the downstream strength and continuity of the coarse sediment cascade. To estimate quantitatively these controls we trace bedload transport for 3 years along Strimm Creek, Eastern Italian Alps. Specifically, we monitor the travel distance of 490 PIT-tagged particles (b axis: 23-229 mm; weight: 83-6525 g) at two contrasting sites: Upper Strimm Creek (US; 4 km2), which flows through a fluvially dominated hanging valley, and Lower Strimm Creek (LS; 7.5 km2), located d...
The transport of coarse material strongly controls the stability and evolution of mountain fluvial s...
Bed load transport during storm events is both an agent of geomorphic change and a significant natu...
Large sediment fluxes from mountain belts have the potential to cause megafans to prograde into the ...
In formerly glaciated mountain settings, Pleistocene glaciations are responsible for profound spatia...
Coarse bed load transport is a crucial process in river morphodynamics but is difficult to monitor i...
Coarse bed load transport is a crucial process in river morphodynamics but is difficult to monitor i...
Current understanding of coarse sediment transport (e.g. threshold for motion, travel length and vir...
Sediment transport during flood events often reveals hysteretic patterns because flow discharge can ...
textUnderstanding how individual grains and populations of grains move through alluvial systems is i...
Suspended and bedload transport dynamics on rivers draining glacierized basins depend on complex pro...
Landscapes evolve over millions of years, through the complex interplay of climate and tectonics. Mo...
Quantifying sediment transport in small mountain basins is of great relevance to assess the morpholo...
Understanding and predicting bedload transport is an important element of watershed management. Yet,...
Understanding the mechanics of bed load at the flood scale is necessary to link hydrology to landsca...
Landscapes evolve over millions of years, through the complex interplay of climate and tectonics. Mo...
The transport of coarse material strongly controls the stability and evolution of mountain fluvial s...
Bed load transport during storm events is both an agent of geomorphic change and a significant natu...
Large sediment fluxes from mountain belts have the potential to cause megafans to prograde into the ...
In formerly glaciated mountain settings, Pleistocene glaciations are responsible for profound spatia...
Coarse bed load transport is a crucial process in river morphodynamics but is difficult to monitor i...
Coarse bed load transport is a crucial process in river morphodynamics but is difficult to monitor i...
Current understanding of coarse sediment transport (e.g. threshold for motion, travel length and vir...
Sediment transport during flood events often reveals hysteretic patterns because flow discharge can ...
textUnderstanding how individual grains and populations of grains move through alluvial systems is i...
Suspended and bedload transport dynamics on rivers draining glacierized basins depend on complex pro...
Landscapes evolve over millions of years, through the complex interplay of climate and tectonics. Mo...
Quantifying sediment transport in small mountain basins is of great relevance to assess the morpholo...
Understanding and predicting bedload transport is an important element of watershed management. Yet,...
Understanding the mechanics of bed load at the flood scale is necessary to link hydrology to landsca...
Landscapes evolve over millions of years, through the complex interplay of climate and tectonics. Mo...
The transport of coarse material strongly controls the stability and evolution of mountain fluvial s...
Bed load transport during storm events is both an agent of geomorphic change and a significant natu...
Large sediment fluxes from mountain belts have the potential to cause megafans to prograde into the ...