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Vegetation enhances curvature-driven dynamics in meandering rivers
by
Tognin, Davide
, D’Alpaos, Andrea
, Lapôtre, Mathieu G. A.
, Ielpi, Alessandro
, Ghinassi, Massimiliano
, Favaro, Serena
, Carniello, Luca
, Finotello, Alvise
, Lazarus, Eli D.
in
704/445/215
/ 704/445/242
/ Channels
/ Curvature
/ Floodplains
/ Flowers & plants
/ Humanities and Social Sciences
/ Hydrodynamics
/ Meanders
/ Morphology
/ multidisciplinary
/ Riparian vegetation
/ River banks
/ Rivers
/ Satellite imagery
/ Science
/ Science (multidisciplinary)
/ Sinuosity
/ Small mammals
/ Statistical analysis
/ Vegetation
2024
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Vegetation enhances curvature-driven dynamics in meandering rivers
by
Tognin, Davide
, D’Alpaos, Andrea
, Lapôtre, Mathieu G. A.
, Ielpi, Alessandro
, Ghinassi, Massimiliano
, Favaro, Serena
, Carniello, Luca
, Finotello, Alvise
, Lazarus, Eli D.
in
704/445/215
/ 704/445/242
/ Channels
/ Curvature
/ Floodplains
/ Flowers & plants
/ Humanities and Social Sciences
/ Hydrodynamics
/ Meanders
/ Morphology
/ multidisciplinary
/ Riparian vegetation
/ River banks
/ Rivers
/ Satellite imagery
/ Science
/ Science (multidisciplinary)
/ Sinuosity
/ Small mammals
/ Statistical analysis
/ Vegetation
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Vegetation enhances curvature-driven dynamics in meandering rivers
by
Tognin, Davide
, D’Alpaos, Andrea
, Lapôtre, Mathieu G. A.
, Ielpi, Alessandro
, Ghinassi, Massimiliano
, Favaro, Serena
, Carniello, Luca
, Finotello, Alvise
, Lazarus, Eli D.
in
704/445/215
/ 704/445/242
/ Channels
/ Curvature
/ Floodplains
/ Flowers & plants
/ Humanities and Social Sciences
/ Hydrodynamics
/ Meanders
/ Morphology
/ multidisciplinary
/ Riparian vegetation
/ River banks
/ Rivers
/ Satellite imagery
/ Science
/ Science (multidisciplinary)
/ Sinuosity
/ Small mammals
/ Statistical analysis
/ Vegetation
2024
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Vegetation enhances curvature-driven dynamics in meandering rivers
Journal Article
Vegetation enhances curvature-driven dynamics in meandering rivers
2024
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Overview
Stabilization of riverbanks by vegetation has long been considered necessary to sustain single-thread meandering rivers. However, observation of active meandering in modern barren landscapes challenges this assumption. Here, we investigate a globally distributed set of modern meandering rivers with varying riparian vegetation densities, using satellite imagery and statistical analyses of meander-form descriptors and migration rates. We show that vegetation enhances the coefficient of proportionality between channel curvature and migration rates at low curvatures, and that this effect wanes in curvier channels irrespective of vegetation density. By stabilizing low-curvature reaches and allowing meanders to gain sinuosity as channels migrate laterally, vegetation quantifiably affects river morphodynamics. Any causality between denser vegetation and higher meander sinuosity, however, cannot be inferred owing to more frequent avulsions in modern non-vegetated environments. By illustrating how vegetation affects channel mobility and floodplain reworking, our findings have implications for assessing carbon stocks and fluxes in river floodplains.
Riparian vegetation densities critically mediate the morphodynamics of meandering rivers: plants slow the rate at which channels move laterally and reinforce the key, first-order control that curvature exerts on meander planform evolution.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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