Proceedings of the National Academy of Sciences · 2009 · 291 citations · 30 references
Coastal ProcessesCoastal ManagementWetland EdgeWetland EcologySalt Marsh EdgesEngineeringGeomorphologyBeach DynamicWetland Edge ErosionCoastal ProcessCoastal DepositSedimentologySediment TransportWetland Edges
This study challenges the paradigm that salt marsh plants prevent lateral wave-induced erosion along wetland edges by binding soil with live roots and clarifies the role of vegetation in protecting the coast. In both laboratory flume studies and controlled field experiments, we show that common salt marsh plants do not significantly mitigate the total amount of erosion along a wetland edge. We found that the soil type is the primary variable that influences the lateral erosion rate and although plants do not directly reduce wetland edge erosion, they may do so indirectly via modification of soil parameters. We conclude that coastal vegetation is best-suited to modify and control sedimentary dynamics in response to gradual phenomena like sea-level rise or tidal forces, but is less well-suited to resist punctuated disturbances at the seaward margin of salt marshes, specifically breaking waves.
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Coastal Ecosystem-Based Management with Nonlinear Ecological Functions and Values
Edward B. Barbier, Evamaria W. Koch, Brian R. Silliman et al. · Science · 2008 · 1.1K citations · Full text
The Asian Tsunami: A Protective Role for Coastal Vegetation
Finn Danielsen, Mikael Sørensen, Mette Fog Olwig et al. · Science · 2005 · 869 citations
Urban-coastal Interaction, Asian Tsunami, Coastal Management +13