Vegetation heights derived from drone laser scanning (DLS), and structure from motion (SfM) photogrammetry at the Virginia Tech StREAM Lab were utilized to determine hydraulic roughness (Manning’s roughness coefficients). We determined hydraulic roughness at three spatial scales: reach, patch, and pixel. For the reach scale, one roughness value was set for the channel, and one value for the entire floodplain. For the patch scale, vegetation heights were used to classify the floodplain into grass, scrub, and small and large trees, with a single roughness value for each. The roughness values for the reach and patch methods were calibrated using a two-dimensional (2D) hydrodynamic model (HEC-RAS) and data from in situ velocity sensors. For the...
The objective of the presented work was to develop a method to acquire Manning's n by creating very ...
In this contribution the complexity of the vertical vegetation structure, based on dense airborne la...
Airborne scanning laser altimetry (LiDAR) is an important new data source for river flood modelling....
Hydrodynamic modeling is a central tool for flood risk management and lies at the base for the dete...
This paper presents a novel technique to quantify in situ hydrodynamic roughness of submerged floodp...
The parameterization of hydrodynamic roughness of floodplains is a key component in the assessment o...
The application of hydrodynamic models for simulating the overbank flow patterns and predicting floo...
For detailed hydrodynamic modelling of vegetated floodplains, the ability to quantify vegetation is ...
2D hydrodynamic modelling has become a powerful tool to simulate the interaction between flow and fl...
Vegetation resistance influences water flow in floodplains. Characterization of vegetation for hydra...
Vegetation in the floodplain plays an important role in dictating the hydraulics of an open channel ...
Vegetation resistance influences water flow in floodplains. Characterization of vegetation for hydra...
Hydraulic roughness in the presence of vegetation is notoriously difficult to predict. However, reli...
1D hydraulic models are largely used to simulate the propagation of flood waves and for flood mappin...
Natural disasters like floods are a worldwide phenomenon and a serious threat to mankind. Flood sim...
The objective of the presented work was to develop a method to acquire Manning's n by creating very ...
In this contribution the complexity of the vertical vegetation structure, based on dense airborne la...
Airborne scanning laser altimetry (LiDAR) is an important new data source for river flood modelling....
Hydrodynamic modeling is a central tool for flood risk management and lies at the base for the dete...
This paper presents a novel technique to quantify in situ hydrodynamic roughness of submerged floodp...
The parameterization of hydrodynamic roughness of floodplains is a key component in the assessment o...
The application of hydrodynamic models for simulating the overbank flow patterns and predicting floo...
For detailed hydrodynamic modelling of vegetated floodplains, the ability to quantify vegetation is ...
2D hydrodynamic modelling has become a powerful tool to simulate the interaction between flow and fl...
Vegetation resistance influences water flow in floodplains. Characterization of vegetation for hydra...
Vegetation in the floodplain plays an important role in dictating the hydraulics of an open channel ...
Vegetation resistance influences water flow in floodplains. Characterization of vegetation for hydra...
Hydraulic roughness in the presence of vegetation is notoriously difficult to predict. However, reli...
1D hydraulic models are largely used to simulate the propagation of flood waves and for flood mappin...
Natural disasters like floods are a worldwide phenomenon and a serious threat to mankind. Flood sim...
The objective of the presented work was to develop a method to acquire Manning's n by creating very ...
In this contribution the complexity of the vertical vegetation structure, based on dense airborne la...
Airborne scanning laser altimetry (LiDAR) is an important new data source for river flood modelling....