Aquatic plants convert mean kinetic energy into turbulent kinetic energy at the scale of the plant stems and branches. This energy transfer, linked to wake generation, affects vegetative drag and turbulence intensity. Drawing on this physical link, a model is developed to describe the drag, turbulence and diffusion for flow through emergent vegetation which for the first time captures the relevant underlying physics, and covers the natural range of vegetation density and stem Reynolds' numbers. The model is supported by laboratory and field observations. In addition, this work extends the cylinder-based model for vegetative resistance by including the dependence of the drag coefficient, CD, on the stem population density, and introduces the...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
In the modeling of vegetated flows an efficient approach is to solve the Double Averaged Navier Stok...
Vegetation patches are particularly diffcult to quantify in terms of flow resistance due to their co...
Edwin A. Cowen,Lance CollinsThe presence of aquatic vegetation in streams becomes an important facto...
Vegetation affects the mean and turbulent flow structure in surface water bodies, thus impacting the...
Vegetation has a profound effect on flow and sediment transport processes in natural rivers, by incr...
Recent field and experimental studies show that the wakes behind individual patches of aquatic veget...
This review describes mean and turbulent flow and mass transport in the presence of aquatic vegetati...
The distribution of aquatic vegetation within conveyance channels plays a key role in the determinat...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
Aquatic vegetation has an important role in estuaries and rivers by acting as bed stabilizer, filter...
This paper looks into the flow profiles in terms of longitudinal and transverse velocities, turbulen...
©2020. American Geophysical Union. All Rights Reserved. Velocity and forces on individual plants wer...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
This paper studied the potential mechanism of form drag for emergent vegetation by combining experim...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
In the modeling of vegetated flows an efficient approach is to solve the Double Averaged Navier Stok...
Vegetation patches are particularly diffcult to quantify in terms of flow resistance due to their co...
Edwin A. Cowen,Lance CollinsThe presence of aquatic vegetation in streams becomes an important facto...
Vegetation affects the mean and turbulent flow structure in surface water bodies, thus impacting the...
Vegetation has a profound effect on flow and sediment transport processes in natural rivers, by incr...
Recent field and experimental studies show that the wakes behind individual patches of aquatic veget...
This review describes mean and turbulent flow and mass transport in the presence of aquatic vegetati...
The distribution of aquatic vegetation within conveyance channels plays a key role in the determinat...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
Aquatic vegetation has an important role in estuaries and rivers by acting as bed stabilizer, filter...
This paper looks into the flow profiles in terms of longitudinal and transverse velocities, turbulen...
©2020. American Geophysical Union. All Rights Reserved. Velocity and forces on individual plants wer...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
This paper studied the potential mechanism of form drag for emergent vegetation by combining experim...
Understanding flow characteristics and turbulent structure in the presence of vegetation is importan...
In the modeling of vegetated flows an efficient approach is to solve the Double Averaged Navier Stok...
Vegetation patches are particularly diffcult to quantify in terms of flow resistance due to their co...