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Mangrove genera influence bed shear stress and coastal protection ecosystem services
Alice J Twomey1, Dylan Cowley2, Simon J Murphy3
1School of the Environment, The University of Queensland, Brisbane, Australia; Division of Hydromechanics, Coastal and Ocean Engineering, Leichtweiß-Institute for Hydraulic Engineering and Water Resources, Technische Universität Braunschweig, Braunschweig, Germany.
Abstract:
Mangrove forest structure varies with species and climate, influencing the provision of ecosystem services. Most studies on coastal protection services assess wave attenuation, few examine sediment accretion, despite its importance for mangrove persistence under sea-level rise (SLR). This study examines how different mangroves influence sediment accretion. We modelled how variation in mangrove structure influenced sediment accretion and validated results against a global dataset of sediment accretion. Of the three dominant seaward fringing genera, Avicennia reduced bed shear stress more than Rhizophora and Sonneratia, promoting higher levels of sediment accretion. The shear stress reduction by Avicennia increased with tree density. For Avicennia, bed shear stress reduction and thus sediment accretion were strongly positively linked to the surface area of inundated roots, although this varied among climate zones. Variation in bed shear strength among mangrove genera indicates a role for biodiversity in influencing resilience to SLR and the provision of other ecosystem services.
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