The wakes and the drag forces of canopy patches with different densities, immersed in turbulent boundary layers, are investigated experimentally. The patches are circular (with outer diameter D) and are made of several identical circular cylinders (height, H and diameter, d). The bulk aspect ratio of all the patches (AR = H~D) was fixed at 1 and the patch density (? = Ncd2~D2, also referred to as solidity) is altered by varying the number of cylinders (Nc) in the patch. Drag measurements show that the patch drag coefficient increases with increasing density. However, the drag coefficient of the highest investigated density (? =0.25) is greater than the drag coefficient of a solid patch (i.e. ? = 1, which is a solid cylinder with AR = 1). PI...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
peer reviewedPatches of vegetation in natural water bodies grow close to each other and may affect e...
The wakes and the drag forces of canopy patches with different densities, immersed in turbulent boun...
The wakes and the drag forces of canopy patches with different densities, immersed in turbulent boun...
This thesis presents extensive experimental data that systematically examines the wakes and the drag...
The properties of the wake generated by a porous body fully immersed in a turbulent boundary layer a...
The properties of the wake generated by a porous body fully immersed in a turbulent boundary layer a...
We conduct a well-controlled model experiment for a wide variety of canopy flows. Examples of these ...
Vegetation patches are frequently found in river channels. Besides being able to affect aquatic envi...
Vegetation patches are particularly difficult to quantify in terms of flow resistance due to their c...
Large eddy simulations (LESs) are performed for turbulent flow through and around a porous patch of ...
We have performed fully resolved simulations of turbulent flows over various submerged rigid canopie...
We have performed high-fidelity simulations of turbulent open-channel flows over submerged rigid can...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
peer reviewedPatches of vegetation in natural water bodies grow close to each other and may affect e...
The wakes and the drag forces of canopy patches with different densities, immersed in turbulent boun...
The wakes and the drag forces of canopy patches with different densities, immersed in turbulent boun...
This thesis presents extensive experimental data that systematically examines the wakes and the drag...
The properties of the wake generated by a porous body fully immersed in a turbulent boundary layer a...
The properties of the wake generated by a porous body fully immersed in a turbulent boundary layer a...
We conduct a well-controlled model experiment for a wide variety of canopy flows. Examples of these ...
Vegetation patches are frequently found in river channels. Besides being able to affect aquatic envi...
Vegetation patches are particularly difficult to quantify in terms of flow resistance due to their c...
Large eddy simulations (LESs) are performed for turbulent flow through and around a porous patch of ...
We have performed fully resolved simulations of turbulent flows over various submerged rigid canopie...
We have performed high-fidelity simulations of turbulent open-channel flows over submerged rigid can...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
This paper presents results of several large-eddy simulations (LES) of turbulent flow in an open cha...
peer reviewedPatches of vegetation in natural water bodies grow close to each other and may affect e...