Surface wave interaction with aquatic vegetation appears to play a key role in coastal hydro-morpho-dynamics. As an example, the presence of a dense meadow at intermediate water depth is usually associated with a stable and resilient shore. Wave-meadow interactions are investigated here by means of physical modelling, with a focus on wave height distribution and hydrodynamics. The central part of a wave flume is covered by flexible artificial seagrass, composed of polyethylene leaves. This vegetation is tested in both near emergent and submerged conditions. The wave height reduction is evaluated by means of a drag coefficient defined from linear wave theory, which contains all the unknowns of the adopted methodology. The behaviour of such a...
Vegetation can contribute to coastal defence by damping incoming waves. However, prior studies have ...
This paper presents a well-controlled laboratory experimental study to evaluate wave attenuation by ...
Dissipation of waves propagating through natural salt marsh vegetation was about half the dissipatio...
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...
Vegetation plays a pivotal role in fluvial and coastal flows, affecting their structure and turbulen...
Aquatic vegetation provides ecosystem services of great value, including the damping of waves, which...
An experimental study, conducted in the large wave flume of CIEM in Barcelona, is presented to evalu...
Seagrass meadows are essential for protection of coastal erosion by damping wave and stabilizing the...
Accurate wave height prediction along the shore plays an important role in coastal protection and ma...
Coastal vegetation acts as a natural barrier at many coastal zones, protecting the landside against ...
Estimates of energy dissipation due to vegetation depend on the selection of an appropriate drag coe...
Laboratory experiments were carried out to study the flow structure both inside and above different ...
The correct address of wave characteristics in the vicinity of submerged vegetation is crucial to pe...
Wave attenuation is a recognized function of sea grass ecosystems which is believed to depend on pla...
Vegetation can contribute to coastal defence by damping incoming waves. However, prior studies have ...
This paper presents a well-controlled laboratory experimental study to evaluate wave attenuation by ...
Dissipation of waves propagating through natural salt marsh vegetation was about half the dissipatio...
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...
Vegetation plays a pivotal role in fluvial and coastal flows, affecting their structure and turbulen...
Aquatic vegetation provides ecosystem services of great value, including the damping of waves, which...
An experimental study, conducted in the large wave flume of CIEM in Barcelona, is presented to evalu...
Seagrass meadows are essential for protection of coastal erosion by damping wave and stabilizing the...
Accurate wave height prediction along the shore plays an important role in coastal protection and ma...
Coastal vegetation acts as a natural barrier at many coastal zones, protecting the landside against ...
Estimates of energy dissipation due to vegetation depend on the selection of an appropriate drag coe...
Laboratory experiments were carried out to study the flow structure both inside and above different ...
The correct address of wave characteristics in the vicinity of submerged vegetation is crucial to pe...
Wave attenuation is a recognized function of sea grass ecosystems which is believed to depend on pla...
Vegetation can contribute to coastal defence by damping incoming waves. However, prior studies have ...
This paper presents a well-controlled laboratory experimental study to evaluate wave attenuation by ...
Dissipation of waves propagating through natural salt marsh vegetation was about half the dissipatio...