Seagrass surrogates are commonly used to mimic the behaviour of seagrasses exposed to currents and their effects on flow fields. The interaction is highly dependent on the chosen mechanic and geometric properties of the surrogates and needs to be understood in order to design artificial meadows. The interaction of single surrogates in unidirectional flow fields is studied by means of physical modelling. Surrogates made of plastic materials with different flexural rigidities, buoyancies and geometries are exposed to varying flow velocities. The instantaneous velocity fields in the vicinity and wake of the surrogates are measured by stereoscopic Particle Image Velocimetry (PIV). All employed surrogates disrupt and interact with the flow field...
Water flow through seagrass beds transports nutrients, affects sediment stability and chemistry, and...
Hydrodynamic processes are an important agent of stress and facilitation in seagrass meadows, but li...
Estimates of energy dissipation due to vegetation depend on the selection of an appropriate drag coe...
Vegetation surrogates have been extensively used in laboratory experiments for studying flow-vegetat...
The distinct turbulence dynamics and transport modulated by a common seagrass species were investiga...
Global environmental changes are a well known phenomenon affecting the climate around us. The challe...
Seagrasses are essential marine ecosystems for which restoration has proven challenging due to incre...
In recent years the prospect of having a seaweed industry in Norway has become of interest. Assessin...
Aquatic vegetation canopies, including seagrasses, provide a host of ecosystem services within coast...
Seagrasses are marine flowering plants that have important roles in the ecological and physical proc...
Plant posture can play a key role in the health of aquatic vegetation, by setting drag, controlling ...
Flow-vegetation interactions is an interdisciplinary research area with applications in the manageme...
Interactions between water flow and aquatic vegetation strongly depend on morphological and biomecha...
The influence of seagrass morphology on water flow was studied by measuring water velocity profiles ...
Physical interactions between seaweed blades of Saccharina latissima and unidirectional turbulent fo...
Water flow through seagrass beds transports nutrients, affects sediment stability and chemistry, and...
Hydrodynamic processes are an important agent of stress and facilitation in seagrass meadows, but li...
Estimates of energy dissipation due to vegetation depend on the selection of an appropriate drag coe...
Vegetation surrogates have been extensively used in laboratory experiments for studying flow-vegetat...
The distinct turbulence dynamics and transport modulated by a common seagrass species were investiga...
Global environmental changes are a well known phenomenon affecting the climate around us. The challe...
Seagrasses are essential marine ecosystems for which restoration has proven challenging due to incre...
In recent years the prospect of having a seaweed industry in Norway has become of interest. Assessin...
Aquatic vegetation canopies, including seagrasses, provide a host of ecosystem services within coast...
Seagrasses are marine flowering plants that have important roles in the ecological and physical proc...
Plant posture can play a key role in the health of aquatic vegetation, by setting drag, controlling ...
Flow-vegetation interactions is an interdisciplinary research area with applications in the manageme...
Interactions between water flow and aquatic vegetation strongly depend on morphological and biomecha...
The influence of seagrass morphology on water flow was studied by measuring water velocity profiles ...
Physical interactions between seaweed blades of Saccharina latissima and unidirectional turbulent fo...
Water flow through seagrass beds transports nutrients, affects sediment stability and chemistry, and...
Hydrodynamic processes are an important agent of stress and facilitation in seagrass meadows, but li...
Estimates of energy dissipation due to vegetation depend on the selection of an appropriate drag coe...