Estuarine tidal dynamics are influenced by changes in morphology and friction. In this work, we quantified changes in tidal damping in the Yangtze Estuary and explored the impact of morphology and friction using a numerical model. In-depth analyses of tidal data reveal a strong reduction in tidal damping from 1990 to 2010, followed by a slightly enhanced damping from 2010 to 2020 in the South Branch. The reduced tidal damping in the South Branch from 1990 to 2010 is controlled by sediment decline which induces an increase in water depth (erosion), thereby strongly amplifying tides. However, the effective bottom roughness (Manning coefficient) is increased by 60%, which is probably related to the (Formula presented.) 80% decrease in the susp...
Estuarine morphodynamics are of broad importance to estuaries’ functions related to navigation, huma...
Estuaries are often characterised by a complex network of branching channels, in which the water mot...
Tidal flats provide essential ecosystem services (e.g. coastal protection and function as habitats s...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
The morphology of the Yangtze Estuary has changed substantially at decadal time scales in response t...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
Estuarine morphodynamics describe the development of estuarine bed over time. The changed morphodyna...
Tidal deltas are fragile systems whose morphology can be easily impacted by variations in water and ...
The objective of this project is to assess the influence of suspended sediment on hydrodynamic prope...
Channel deepening often triggers positive feedback between tidal deformation, sediment import and dr...
Estuary morphologies are dynamic systems, and their stabilities are dependent on various forcing con...
Estuarine morphodynamics undergo significant changes due to declined sediment supply from river, ris...
This research is dedicated to studying longterm estuarine morphodynamic behavior under combined rive...
The morphological changing trend of the Yangtze Estuary, the largest estuary of Asia, has become a f...
Assessing the impacts of both natural (e.g., tidal forcing from the ocean) and human-induced changes...
Estuarine morphodynamics are of broad importance to estuaries’ functions related to navigation, huma...
Estuaries are often characterised by a complex network of branching channels, in which the water mot...
Tidal flats provide essential ecosystem services (e.g. coastal protection and function as habitats s...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
The morphology of the Yangtze Estuary has changed substantially at decadal time scales in response t...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
Estuarine morphodynamics describe the development of estuarine bed over time. The changed morphodyna...
Tidal deltas are fragile systems whose morphology can be easily impacted by variations in water and ...
The objective of this project is to assess the influence of suspended sediment on hydrodynamic prope...
Channel deepening often triggers positive feedback between tidal deformation, sediment import and dr...
Estuary morphologies are dynamic systems, and their stabilities are dependent on various forcing con...
Estuarine morphodynamics undergo significant changes due to declined sediment supply from river, ris...
This research is dedicated to studying longterm estuarine morphodynamic behavior under combined rive...
The morphological changing trend of the Yangtze Estuary, the largest estuary of Asia, has become a f...
Assessing the impacts of both natural (e.g., tidal forcing from the ocean) and human-induced changes...
Estuarine morphodynamics are of broad importance to estuaries’ functions related to navigation, huma...
Estuaries are often characterised by a complex network of branching channels, in which the water mot...
Tidal flats provide essential ecosystem services (e.g. coastal protection and function as habitats s...