Modelling the dynamics of intertidal mudflat and salt marshes within estuaries
M.A.F. Knaapen, Ian Townend, Kate Rossington, Chloe Fletcher, J. Spearman
Abstract
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M.A.F. Knaapen, Ian Townend, Kate Rossington, Chloe Fletcher, J. Spearman
Abstract
Open-access reader
The aggregated modelling concept, ASMITA, is used to study gross changes in estuary and tidal inlets over centuries. This paper presents the extension of ASMITA with elements representing salt marshes, where vegetation causes increased sedimentation. First results show that this extension makes ASMITA simulations more realistic, but further validation and calibration against empirical data are required. \n \nThe model simulations confirm that channels in estuaries marsh and upper flats will disappear giving an increase in lower flats. This change is partly suppressed by the presence of marsh vegetation. Under high rates of sea level rise salt marshes will drown when the estuary boundaries are constrained (coastal squeeze).
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The aggregated modelling concept, ASMITA, is used to study gross changes in estuary and tidal inlets over centuries. This paper presents the extension of ASMITA with elements representing salt marshes, where vegetation causes increased sedimentation. First results show that this extension makes ASMITA simulations more realistic, but further validation and calibration against empirical data are required. \n \nThe model simulations confirm that channels in estuaries marsh and upper flats will disappear giving an increase in lower flats. This change is partly suppressed by the presence of marsh vegetation. Under high rates of sea level rise salt marshes will drown when the estuary boundaries are constrained (coastal squeeze).
Key concepts: Salt marsh, Estuary, Intertidal zone, Marsh, Inlet, Oceanography, Vegetation (pathology), Environmental science