The influence of vegetation-generated turbulence on deposition in emergent canopies

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Date
2023-10-10
Authors
Deitrick, Autumn R.
Hovendon, Erin H.
Ralston, David K.
Nepf, Heidi M.
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10.3389/fmars.2023.1266241
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Mangroves
Pneumatophores
Sediment
Deposition
Turbulence
Abstract
Laboratory experiments measured sediment deposition and turbulent kinetic energy (TKE) in bare and vegetated channels. The model vegetation represented a mangrove pneumatophore canopy. Three solid volume fractions were considered (f = 0.01, 0.02, and 0.04). For the same channel-averaged velocity, the vegetated region had elevated near-bed TKE compared to the bare region. Net deposition in both regions was measured by adding a sediment slurry of 11-micron solid glass spheres to the flume and collecting the deposited sediment from the flume baseboards after a 4-hr experiment. The elevated near- bed TKE in the vegetated region resulted in lower deposition compared to the bare region. A model for deposition probability written in terms of near-bed TKE (TKE model) more accurately predicted the measured deposition than a model based on bed shear stress (tb model). Application of the model to field conditions suggested that, by inhibiting deposition, vegetation-generated TKE facilitates the delivery of sediment farther into the mangrove forest than would be achieved without vegetation-generated TKE.
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© The Author(s), 2023. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Deitrick, A., Hovendon, E., Ralston, D., & Nepf, H. (2023). The influence of vegetation-generated turbulence on deposition in emergent canopies. Frontiers in Marine Science, 10, 1266241, https://doi.org/10.3389/fmars.2023.1266241.
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Deitrick, A., Hovendon, E., Ralston, D., & Nepf, H. (2023). The influence of vegetation-generated turbulence on deposition in emergent canopies. Frontiers in Marine Science, 10, 1266241.
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