River-tide dynamics remain poorly understood, in part because conventional harmonic analysis (HA) does not cope effectively with nonstationary signals. To explore nonstationary behavior of river tides and the modulation effects of river discharge, this work analyzes tidal signals in the Yangtze River estuary using both HA in a nonstationary mode and continuous wavelet transforms (CWT). The Yangtze is an excellent natural laboratory to analyze river tides because of its high and variable flow, its length, and the fact that there are do dams or reflecting barriers within the tidal part of the system. Analysis of tidal frequencies by CWT and analysis of subtidal water level and tidal ranges reveal a broad range of subtidal variations over fort...
[1] Tidal rivers feature oscillatory and steady gradients in the water surface, controlled by intera...
As the tidal wave propagates into an estuary, the tidally averaged water level tends to rise in land...
See next page for additional authors Let us know how access to this document benefits you. Follow th...
River-tide dynamics remain poorly understood, in part because conventional harmonic analysis (HA) do...
Influenced by river discharge, the tidal properties of estuarine tides can be more complex than thos...
Wavelet transforms provide a valuable new tool for analysis of tidal processes that deviate markedly...
Estuaries are transition regions between marines and inland rivers where hydrodynamic processes are ...
Estuarine morphodynamics are of broad importance to estuaries’ functions related to navigation, huma...
The Yangtze River Estuary (YRE) is one of the world’s largest river-tidal systems with rapidly chang...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
<p>Tidal rivers are a vital and little studied nexus between physical oceanography and hydrology. It...
The spectrum of tidal and subtidal water level variations in river deltas responds to river discharg...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
Tidal rivers are a vital and little studied nexus between physical oceanography and hydrology. It is...
Tidal rivers are a vital and little studied nexus between physical oceanography and hydrology. It is...
[1] Tidal rivers feature oscillatory and steady gradients in the water surface, controlled by intera...
As the tidal wave propagates into an estuary, the tidally averaged water level tends to rise in land...
See next page for additional authors Let us know how access to this document benefits you. Follow th...
River-tide dynamics remain poorly understood, in part because conventional harmonic analysis (HA) do...
Influenced by river discharge, the tidal properties of estuarine tides can be more complex than thos...
Wavelet transforms provide a valuable new tool for analysis of tidal processes that deviate markedly...
Estuaries are transition regions between marines and inland rivers where hydrodynamic processes are ...
Estuarine morphodynamics are of broad importance to estuaries’ functions related to navigation, huma...
The Yangtze River Estuary (YRE) is one of the world’s largest river-tidal systems with rapidly chang...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
<p>Tidal rivers are a vital and little studied nexus between physical oceanography and hydrology. It...
The spectrum of tidal and subtidal water level variations in river deltas responds to river discharg...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
Tidal rivers are a vital and little studied nexus between physical oceanography and hydrology. It is...
Tidal rivers are a vital and little studied nexus between physical oceanography and hydrology. It is...
[1] Tidal rivers feature oscillatory and steady gradients in the water surface, controlled by intera...
As the tidal wave propagates into an estuary, the tidally averaged water level tends to rise in land...
See next page for additional authors Let us know how access to this document benefits you. Follow th...