Flow division at bifurcations in the Yangtze Estuary has received ample attention, since it may control the pathways of terrestrial sediments over downstream river branches including the 12.5 m Deepwater Navigation channel. While some efforts have been made to interpret flow division at the bifurcations of the Yangtze Estuary, little attention has been paid to the role of tides. Flow division at estuarine bifurcations is made complicated by tides that propagate from the outlet of the tidal channels into the delta. To quantify the tidal influence on the distribution of river discharge, and more generally, to understand the mechanisms governing the subtidal flow division at the tidally affected bifurcation in the Yangtze River Delta, a two-di...
The Yangtze River Estuary (YRE) is one of the world’s largest river-tidal systems with rapidly chang...
Tidal propagation in, and division of net water transport over different channels in an estuarine ne...
Bifurcations in tidally influenced deltas distribute river discharge over downstream channels, asser...
In branching delta channel networks, tides intrude into parallel river outlets causing complex tidal...
In branching delta channel networks, tides intrude into parallel river outlets causing complex tidal...
The channels in the Yangtze Estuary have an ordered-branching structure: The estuary is first divide...
The channels in the Yangtze Estuary have an ordered-branching structure: The estuary is first divide...
Tides influence distribution of river discharge at tidally affected channel junctions. At the apex o...
Tides influence distribution of river discharge at tidally affected channel junctions. At the apex o...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
Estuaries are transition regions between marines and inland rivers where hydrodynamic processes are ...
Estuaries are transition regions between marines and inland rivers where hydrodynamic processes are ...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
Estuaries are transition regions between marines and inland rivers where hydrodynamic processes are ...
Tides influence distribution of river discharge at tidally affected channel junctions. At the apex ...
The Yangtze River Estuary (YRE) is one of the world’s largest river-tidal systems with rapidly chang...
Tidal propagation in, and division of net water transport over different channels in an estuarine ne...
Bifurcations in tidally influenced deltas distribute river discharge over downstream channels, asser...
In branching delta channel networks, tides intrude into parallel river outlets causing complex tidal...
In branching delta channel networks, tides intrude into parallel river outlets causing complex tidal...
The channels in the Yangtze Estuary have an ordered-branching structure: The estuary is first divide...
The channels in the Yangtze Estuary have an ordered-branching structure: The estuary is first divide...
Tides influence distribution of river discharge at tidally affected channel junctions. At the apex o...
Tides influence distribution of river discharge at tidally affected channel junctions. At the apex o...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
Estuaries are transition regions between marines and inland rivers where hydrodynamic processes are ...
Estuaries are transition regions between marines and inland rivers where hydrodynamic processes are ...
As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a fricti...
Estuaries are transition regions between marines and inland rivers where hydrodynamic processes are ...
Tides influence distribution of river discharge at tidally affected channel junctions. At the apex ...
The Yangtze River Estuary (YRE) is one of the world’s largest river-tidal systems with rapidly chang...
Tidal propagation in, and division of net water transport over different channels in an estuarine ne...
Bifurcations in tidally influenced deltas distribute river discharge over downstream channels, asser...