Short-term bed-level variability in tidal wetlands has important implication both for ecology and engineering. In this study, we combined in situ measurements with model simulations to quantify short-term bed-level changes on a meso-macrotidal wetland in the Yangtze River Delta. On the middle flat, we observed erosion during neap-to-mean tides under onshore moderate-to-strong winds, and bed recovery during subsequent spring tides, when winds were both offshore and weaker, suggesting that winds can overturn the neap–spring cyclicity of bed-level changes even on meso–macrotidal mudflats. The magnitude of bed-level changes was smaller on both sides of the middle flat, while the smallest changes occurred on the salt marsh. Observed bed-level ch...
Tidal wetlands provide a habitat for a wide range of vegetation communities and animal species that ...
Sediment dynamics in tidal flats, ranging from daily to seasonal timescales, are particularly releva...
To unravel the relation between hydrodynamic forcing and the dynamics of the tidal flat–salt-marsh e...
Short-term bed-level variability in tidal wetlands has important implication both for ecology and en...
Sediment dynamics have an important influence on the morphological evolution of tidal wetlands, whic...
Tidal flats provide essential ecosystem services (e.g. coastal protection and function as habitats s...
On the open coast of the Changjiang Delta, waves temporally play their dominant roles in shaping the...
To examine the spatial and temporal variability of sediment grain size in exposed tidal wetlands wit...
The Yangtze River is one of the largest rivers in the world and the longest one in Asia. Its estuary...
Based on the measurement on near-bed current, wave, suspended sediment concentration, sedimentary gr...
Bed level dynamics at the interface of the salt marsh and tidal flat have been highlighted as a key ...
Understanding sediment sorting and bedding dynamics has high value to unravelling the mechanisms und...
Bed level dynamics at the interface of the salt marsh and tidal flat have been highlighted as a key ...
Short-term bed-level dynamics has been identified as one of the main factors affecting biota establi...
To unravel the relation between hydrodynamic forcing and the dynamics of the tidal flat salt-marsh e...
Tidal wetlands provide a habitat for a wide range of vegetation communities and animal species that ...
Sediment dynamics in tidal flats, ranging from daily to seasonal timescales, are particularly releva...
To unravel the relation between hydrodynamic forcing and the dynamics of the tidal flat–salt-marsh e...
Short-term bed-level variability in tidal wetlands has important implication both for ecology and en...
Sediment dynamics have an important influence on the morphological evolution of tidal wetlands, whic...
Tidal flats provide essential ecosystem services (e.g. coastal protection and function as habitats s...
On the open coast of the Changjiang Delta, waves temporally play their dominant roles in shaping the...
To examine the spatial and temporal variability of sediment grain size in exposed tidal wetlands wit...
The Yangtze River is one of the largest rivers in the world and the longest one in Asia. Its estuary...
Based on the measurement on near-bed current, wave, suspended sediment concentration, sedimentary gr...
Bed level dynamics at the interface of the salt marsh and tidal flat have been highlighted as a key ...
Understanding sediment sorting and bedding dynamics has high value to unravelling the mechanisms und...
Bed level dynamics at the interface of the salt marsh and tidal flat have been highlighted as a key ...
Short-term bed-level dynamics has been identified as one of the main factors affecting biota establi...
To unravel the relation between hydrodynamic forcing and the dynamics of the tidal flat salt-marsh e...
Tidal wetlands provide a habitat for a wide range of vegetation communities and animal species that ...
Sediment dynamics in tidal flats, ranging from daily to seasonal timescales, are particularly releva...
To unravel the relation between hydrodynamic forcing and the dynamics of the tidal flat–salt-marsh e...