Riparian vegetation and large wood play a crucial role in shaping rivers. On the one hand, vegetation tends to increase bank stability, reduce channel width and reduce the braiding index in gravel-bed rivers. Conversely, large wood tends to increase channel dynamics and promote avulsions. The effects of vegetation and large wood have been rarely simulated together in flume experiments. In this paper we present a series of experimental runs conducted in a large flume facility, using cylindrical wooden dowels and alfalfa seedlings to represent logs and vegetation, respectively, in order to investigate their role on determining the topographical nature of braided river systems. A terrestrial laser scanner was used to measure in detail the topo...
Riparian vegetation can significantly influence the morphology of the river, affectingchannel geomet...
While the scientific community has long recognized that alluvial rivers are the product of interacti...
Riverine environments can be very dynamic and complex systems, particularly because of the interacti...
Both live riparian vegetation and dead logs play a crucial role in shaping and determining the morph...
Many studies have been conducted to understand the effects of vegetation. However, the effects of ve...
Exploring the effects of bank vegetation on fluvial morphodynamics has long been an essential part o...
Braided rivers exhibit extremely complex and dynamic morphologies as their multiple channels are con...
With riverine flooding set to be more frequent in many parts of the world as a result of climate cha...
Evaluating the impact of a wide range of vegetation densities on river channel pattern [Abstract
Large wood and its accumulations are poorly understood despite being an important feature in the fun...
River embankments are one of the main causes of a loss in active channel movement. The knock-on effe...
Copyright © 2017 John Wiley & Sons, Ltd. Large wood is a powerful geomorphic agent in rivers, prov...
The purpose of this study was to examine the effects of large wood (LW) on the physical environment ...
This work investigates wood dynamics in braided streams through physical modelling in a mobile bed l...
The work described in this publication was supported by the European Union Seventh Framework Program...
Riparian vegetation can significantly influence the morphology of the river, affectingchannel geomet...
While the scientific community has long recognized that alluvial rivers are the product of interacti...
Riverine environments can be very dynamic and complex systems, particularly because of the interacti...
Both live riparian vegetation and dead logs play a crucial role in shaping and determining the morph...
Many studies have been conducted to understand the effects of vegetation. However, the effects of ve...
Exploring the effects of bank vegetation on fluvial morphodynamics has long been an essential part o...
Braided rivers exhibit extremely complex and dynamic morphologies as their multiple channels are con...
With riverine flooding set to be more frequent in many parts of the world as a result of climate cha...
Evaluating the impact of a wide range of vegetation densities on river channel pattern [Abstract
Large wood and its accumulations are poorly understood despite being an important feature in the fun...
River embankments are one of the main causes of a loss in active channel movement. The knock-on effe...
Copyright © 2017 John Wiley & Sons, Ltd. Large wood is a powerful geomorphic agent in rivers, prov...
The purpose of this study was to examine the effects of large wood (LW) on the physical environment ...
This work investigates wood dynamics in braided streams through physical modelling in a mobile bed l...
The work described in this publication was supported by the European Union Seventh Framework Program...
Riparian vegetation can significantly influence the morphology of the river, affectingchannel geomet...
While the scientific community has long recognized that alluvial rivers are the product of interacti...
Riverine environments can be very dynamic and complex systems, particularly because of the interacti...