Canopies formed by aquatic vegetation, such as mangroves, seagrass, and kelp, play a crucial role in altering the local hydrodynamics in rivers, estuaries, and coastal regions, and thereby influence a range of morphodynamic and biophysical processes. Prediction of the influence of canopies on these hydrodynamic processes requires a fundamental understanding of canopy drag, which varies significantly with both flow conditions and canopy properties (such as density and submergence). Although our knowledge on canopy drag has increased significantly in recent decades, a conclusive, physics-based description for canopy drag that can be applied to both emergent and submerged canopies is currently lacking. Here, we extend a new theoretical canopy ...
Wave-driven flows over canopies of aquatic vegetation (such as seagrass) are characterized by the ge...
Edwin A. Cowen,Lance CollinsThe presence of aquatic vegetation in streams becomes an important facto...
This paper summarizes recent advances in vegetation hydrodynamics and uses the new concepts to explo...
Canopies formed by aquatic vegetation, such as mangroves, seagrass, and kelp, play a crucial role in...
Vegetation has a profound effect on flow and sediment transport processes in natural rivers, by incr...
This paper investigates the response of full-scale submerged riparian vegetation to hydrodynamic loa...
Plant posture can play a key role in the health of aquatic vegetation, by setting drag, controlling ...
This review describes mean and turbulent flow and mass transport in the presence of aquatic vegetati...
Estimates of energy dissipation due to vegetation depend on the selection of an appropriate drag coe...
In the last few decades extensive studies focusing on both qualitative and quantitative descriptions...
Aquatic plants convert mean kinetic energy into turbulent kinetic energy at the scale of the plant s...
Aquatic vegetation has an important role in estuaries and rivers by acting as bed stabilizer, filter...
An analytical model was developed to predict the velocity evolution within a submerged canopy of fin...
Vegetation patches are frequently found in river channels. Besides being able to affect aquatic envi...
An experimental study of unidirectional flow through a model mangrove forest measured both velocity ...
Wave-driven flows over canopies of aquatic vegetation (such as seagrass) are characterized by the ge...
Edwin A. Cowen,Lance CollinsThe presence of aquatic vegetation in streams becomes an important facto...
This paper summarizes recent advances in vegetation hydrodynamics and uses the new concepts to explo...
Canopies formed by aquatic vegetation, such as mangroves, seagrass, and kelp, play a crucial role in...
Vegetation has a profound effect on flow and sediment transport processes in natural rivers, by incr...
This paper investigates the response of full-scale submerged riparian vegetation to hydrodynamic loa...
Plant posture can play a key role in the health of aquatic vegetation, by setting drag, controlling ...
This review describes mean and turbulent flow and mass transport in the presence of aquatic vegetati...
Estimates of energy dissipation due to vegetation depend on the selection of an appropriate drag coe...
In the last few decades extensive studies focusing on both qualitative and quantitative descriptions...
Aquatic plants convert mean kinetic energy into turbulent kinetic energy at the scale of the plant s...
Aquatic vegetation has an important role in estuaries and rivers by acting as bed stabilizer, filter...
An analytical model was developed to predict the velocity evolution within a submerged canopy of fin...
Vegetation patches are frequently found in river channels. Besides being able to affect aquatic envi...
An experimental study of unidirectional flow through a model mangrove forest measured both velocity ...
Wave-driven flows over canopies of aquatic vegetation (such as seagrass) are characterized by the ge...
Edwin A. Cowen,Lance CollinsThe presence of aquatic vegetation in streams becomes an important facto...
This paper summarizes recent advances in vegetation hydrodynamics and uses the new concepts to explo...