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Modeling coupling between eelgrass Zostera marina and water flow
2007
Marine Ecology Progress Series
Ecological effects caused by submerged aquatic vegetation not only depend on the plants and their morphology but also on the flow and transport patterns of dissolved and suspended constituents near the canopy. Canopy height is a major variable in any quantitative analysis of plant biomass and constituent transport in its vicinity. Height of eelgrass Zostera marina canopies changes due to bending of the blades under varying current regimes. In this paper, I mathematically modeled the coupling
doi:10.3354/meps338081
fatcat:fk6bqw2t6rbl7kzdoumxjk2rcq