This coupled wave-vegetation model aims to tackle the interaction between linear waves and flexible vegetation with large deflections. Note that here only linear wave is considered. The vegetation model is based on the explicit truss-spring model, which is capable of resolving the motion of flexible vegetation and the ropes on which the vegetation is suspended. The coupling between flow and vegetation is implemented using a diffused immersed boundary method.</p
[[abstract]]Vegetation canopies control mean and turbulent flow structure as well as surface wave pr...
The correct address of wave characteristics in the vicinity of submerged vegetation is crucial to pe...
Extreme coastal events require careful prediction of wave forces. Recent tsunamis have resulted in e...
Aquatic vegetation, found in coastal waters and inter tidal areas, has important features for hydrau...
Aquatic vegetation attenuates local currents, dampens wave energy and promotes sedimentation. Its fu...
This thesis is concerned with the mechanical aspects of fluid-vegetation interaction in coastal flow...
A fully three-dimensional numerical model has been developed to simulate the wave-current-vegetation...
Surface wave interaction with aquatic vegetation appears to play a key role in coastal hydro-morpho-...
Dissipation of waves propagating through natural salt marsh vegetation was about half the dissipatio...
Aquatic vegetation provides ecosystem services of great value, including the damping of waves, which...
Aquatic vegetation has an important role in estuaries and rivers by acting as bed stabilizer, filter...
In many areas around the world, there is a large interest in the protection and restoration of aquat...
Physical modelling of vegetated flows is an essential component of process -based investigations int...
A new wave-vegetation model is implemented in an open-source code, SWASH (Simulating WAves till SHor...
Physical modeling of canopy‐flow interactions has mostly employed rigid model vegetation, whereby th...
[[abstract]]Vegetation canopies control mean and turbulent flow structure as well as surface wave pr...
The correct address of wave characteristics in the vicinity of submerged vegetation is crucial to pe...
Extreme coastal events require careful prediction of wave forces. Recent tsunamis have resulted in e...
Aquatic vegetation, found in coastal waters and inter tidal areas, has important features for hydrau...
Aquatic vegetation attenuates local currents, dampens wave energy and promotes sedimentation. Its fu...
This thesis is concerned with the mechanical aspects of fluid-vegetation interaction in coastal flow...
A fully three-dimensional numerical model has been developed to simulate the wave-current-vegetation...
Surface wave interaction with aquatic vegetation appears to play a key role in coastal hydro-morpho-...
Dissipation of waves propagating through natural salt marsh vegetation was about half the dissipatio...
Aquatic vegetation provides ecosystem services of great value, including the damping of waves, which...
Aquatic vegetation has an important role in estuaries and rivers by acting as bed stabilizer, filter...
In many areas around the world, there is a large interest in the protection and restoration of aquat...
Physical modelling of vegetated flows is an essential component of process -based investigations int...
A new wave-vegetation model is implemented in an open-source code, SWASH (Simulating WAves till SHor...
Physical modeling of canopy‐flow interactions has mostly employed rigid model vegetation, whereby th...
[[abstract]]Vegetation canopies control mean and turbulent flow structure as well as surface wave pr...
The correct address of wave characteristics in the vicinity of submerged vegetation is crucial to pe...
Extreme coastal events require careful prediction of wave forces. Recent tsunamis have resulted in e...