Document généré le 24/06/2026 depuis l'adresse: https://www.documentation.eauetbiodiversite.fr/fr/notice/role-des-herbiers-de-zosteres-zostera-noltii-sur-la-dynamique-sedimentaire-du-bassin-d-arcachon
Titre alternatif
Producteur
Contributeur(s)
Éditeur(s)
Universté de Bordeaux 1
Identifiant documentaire
9-17170
Identifiant OAI
oai:archimer.ifremer.fr:17170
Auteur(s):
Ganthy, Florian
Mots clés
Phanérogames
Zostera noltii
croissance saisonnière
dynamique sédimentaire
bassin d’Arcachon
Seagrasses
Zostera noltii
seasonal growth
sediment dynamics
Arcachon lagoon
Date de publication
14/12/2011
Date de création
Date de modification
Date d'acceptation du document
Date de dépôt légal
Langue
fre
Thème
Type de ressource
Source
Droits de réutilisation
2011 The author, Univ. Bordeaux 1
Région
Département
Commune
Description
The intertidal flats in the Arcachon lagoon are extensively colonized by seagrass meadows of Zostera noltii. The last ten years these meadows experienced a drastic regression of their surface area. Understanding the impact of seagrass on hydrodynamics and sediment dynamics is required to
anticipate the consequences of meadows regression on the sediment dynamics of the Arcachon lagoon.
Flume experiments with natural seagrass highlighted a strong velocity attenuation associated with a turbulence increase near the bed within seagrass canopies. An increase in sediment protection from erosion and in deposition fluxes related to the seagrass growth was found.
Erosion tests showed seasonal variability of sediment resistance against erosion associated with changes in sediment characteristics. The bed stabilization induced by the root system and its seasonality was also observed. A parameterization of the erosion law was found.
The in-situ survey of sediment altimetry, sediment and biometric characteristics showed a significant trend to sediment deposition on colonized sites, while erosion occurred on the unvegetated site. On the vegetated sites, surface sediment evolutions are correlated to the seagrass growth. Sediment became finer during the growth while the sand content rose during the end-of-season die-off.
The hydrodynamic model MARS-3D was modified to take into account for seagrass and its flexibility on hydrodynamics and produced good simulation of velocity profiles in presence of seagrasses.
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