Flume experiments with particle imaging velocimetry (PIV) were conducted recently to study a complex flow problem where wind shear acts on the surface of a static water body in presence of flexible emergent vegetation and induces a rich dynamics of wave–turbulence–vegetation interaction inside the water body without any gravitational gradient. The experiments were aimed at mimicking realistic vegetated wetlands and the present work is targeted to improve the understanding of the coherent structures associated with this interaction by employing a combination of techniques such as quadrant analysis, proper orthogonal decomposition (POD), Shannon entropy and mutual information content (MIC). The turbulent transfer of momentum is found to be do...
Submerged aquatic vegetation can dramatically alter the drag, turbulence and diffusivity characteris...
Emergent vegetation covering floodplains and wetlands has an important role in fluvial ecosystems. S...
Aquatic vegetation appears very often in rivers and floodplains, which significantly affects the flo...
A contributing factor on a water quality issue in a closed water body is in a sedimentation and a de...
This thesis is concerned with the mechanical aspects of fluid-vegetation interaction in coastal flow...
Riparian shrubs and trees present a complex, seasonally variable morphology, with flexible stems and...
Aquatic vegetation, found in coastal waters and inter tidal areas, has important features for hydrau...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
Laboratory experiments measured the velocity inside a model meadow of submerged, flexible vegetation...
Experiments were conducted in a laboratory flume using an artificial seagrass meadow, modeled after ...
The aim of this study is to understand the turbulent flow structure within diverse canopy models dom...
Surface wave interaction with aquatic vegetation appears to play a key role in coastal hydro-morpho-...
[[abstract]]Vegetation canopies control mean and turbulent flow structure as well as surface wave pr...
Coastal zones are governed by physical forces originating from tidal currents, waves, winds and nigh...
Submerged aquatic vegetation can dramatically alter the drag, turbulence and diffusivity characteris...
Emergent vegetation covering floodplains and wetlands has an important role in fluvial ecosystems. S...
Aquatic vegetation appears very often in rivers and floodplains, which significantly affects the flo...
A contributing factor on a water quality issue in a closed water body is in a sedimentation and a de...
This thesis is concerned with the mechanical aspects of fluid-vegetation interaction in coastal flow...
Riparian shrubs and trees present a complex, seasonally variable morphology, with flexible stems and...
Aquatic vegetation, found in coastal waters and inter tidal areas, has important features for hydrau...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
Laboratory experiments measured the velocity inside a model meadow of submerged, flexible vegetation...
Experiments were conducted in a laboratory flume using an artificial seagrass meadow, modeled after ...
The aim of this study is to understand the turbulent flow structure within diverse canopy models dom...
Surface wave interaction with aquatic vegetation appears to play a key role in coastal hydro-morpho-...
[[abstract]]Vegetation canopies control mean and turbulent flow structure as well as surface wave pr...
Coastal zones are governed by physical forces originating from tidal currents, waves, winds and nigh...
Submerged aquatic vegetation can dramatically alter the drag, turbulence and diffusivity characteris...
Emergent vegetation covering floodplains and wetlands has an important role in fluvial ecosystems. S...
Aquatic vegetation appears very often in rivers and floodplains, which significantly affects the flo...