Area of research
Ecology · Earth-Surface Processes
Research interest
Research interests include Geology, Meander (mathematics), Fluvial, Beach morphodynamics, Point bar, and Geomorphology.
Vegetation changes the trajectory of river bends
Vegetation enhances curvature-driven dynamics in meandering rivers
Large sinuous rivers are slowing down in a warming Arctic
Long‐Term Monitoring of Coupled Vegetation and Elevation Changes in Response to Sea Level Rise in a Microtidal Salt Marsh
Hydrodynamic Feedbacks of Salt‐Marsh Loss in the Shallow Microtidal Back‐Barrier Lagoon of Venice (Italy)
Loss of geomorphic diversity in shallow tidal embayments promoted by storm-surge barriers
Morpho‐sedimentary evolution of a microtidal meandering channel driven by 130 years of natural and anthropogenic modifications of the Venice Lagoon (Italy)
Hydrodynamics of Meander Bends in Intertidal Mudflats: A Field Study From the Macrotidal Yangkou Coast, China
A Minimalist Model of Salt-Marsh Vegetation Dynamics Driven by Species Competition and Dispersal
Remotely-sensed planform morphologies reveal fluvial and tidal nature of meandering channels
Three‐Dimensional Flow Structures and Morphodynamic Evolution of Microtidal Meandering Channels
Control of wind-wave power on morphological shape of salt marsh margins
Planform‐asymmetry and backwater effects on river‐cutoff kinematics and clustering
Channel mobility drives a diverse stratigraphic architecture in the dryland Mojave River (California, USA)
Piracy-controlled geometry of tide-dominated point bars: Combined evidence from ancient sedimentary successions and modern channel networks
Tidal Flow Asymmetry and Discharge of Lateral Tributaries Drive the Evolution of a Microtidal Meander in the Venice Lagoon (Italy)
Point-bar brink and channel thalweg trajectories depicting interaction between vertical and lateral shifts of microtidal channels in the Venice Lagoon (Italy)
High curvatures drive river meandering: COMMENT
Tidal currents and wind waves controlling sediment distribution in a subtidal point bar of the Venice Lagoon (Italy)
Field migration rates of tidal meanders recapitulate fluvial morphodynamics
Reduction of deltaic channel mobility by tidal action under rising relative sea level
Morphodynamic evolution and sedimentology of a microtidal meander bend of the Venice Lagoon (Italy)
Morphodynamic evolution and stratal architecture of translating tidal point bars: Inferences from the northern Venice Lagoon (Italy)
Tidal meander migration and dynamics: A case study from the Venice Lagoon
Aggradation and lateral migration shaping geometry of a tidal point bar: An example from salt marshes of the Northern Venice Lagoon (Italy)