The transformation of the energy system pushes the expansion of wind power in Germany towards the installation of new wind farms in complex and forest covered terrain. The primary objective of this thesis is to derive forest structure parameters in high resolution as input for flow simulations used in wind energy site assessment. For this purpose, airborne LiDAR data is processed, and a digital terrain model (DTM), as well as forest heights and forest densities, are determined. Airborne laser scanning (ALS) is a new technique for land surface applications. A fast development could be observed in recent years, and it is about to supersede the traditional ground-based measurement techniques. This bears new challenges for the forest parametris...
The capability of a model based on Large-Eddy Simulations (LES) to reproduce turbulence measurements...
Protection forest management requires reliable data on the structural characteristics of forest stan...
Today, airborne laser scanning (ALS) is the standard method for detailed topographic data acquisitio...
AbstractThe difficulty of obtaining accurate information about the canopy structure is a current lim...
Successful wind power projects start with a realistic representation of the surface, more specifical...
Application of airborne laser scanning in forests Abstract The main aim of this work is to determine...
The wind speed distribution in forests is dominated by inhomogeneities like step changes in stand he...
Accurate three-dimensional information on canopy structure contributes to better understanding of ra...
This paper presents a methodology for the derivation of structural parameters and stem volume in for...
Accurate three-dimensional information on canopy structure contributes to better understanding of ra...
Accurate estimates of vegetation structure are important for a large number of applications includin...
Pulse density, the number of laser pulses that intercept a surface per unit area, is a key considera...
Airborne laser scanning (ALS) technology is receiving increasing attention in forestry. So far, ALS ...
The transmittance of laser pulses through the forest canopy was studied as a function of forest attr...
The capability of a model based on Large-Eddy Simulations (LES) to reproduce turbulence measurements...
The capability of a model based on Large-Eddy Simulations (LES) to reproduce turbulence measurements...
Protection forest management requires reliable data on the structural characteristics of forest stan...
Today, airborne laser scanning (ALS) is the standard method for detailed topographic data acquisitio...
AbstractThe difficulty of obtaining accurate information about the canopy structure is a current lim...
Successful wind power projects start with a realistic representation of the surface, more specifical...
Application of airborne laser scanning in forests Abstract The main aim of this work is to determine...
The wind speed distribution in forests is dominated by inhomogeneities like step changes in stand he...
Accurate three-dimensional information on canopy structure contributes to better understanding of ra...
This paper presents a methodology for the derivation of structural parameters and stem volume in for...
Accurate three-dimensional information on canopy structure contributes to better understanding of ra...
Accurate estimates of vegetation structure are important for a large number of applications includin...
Pulse density, the number of laser pulses that intercept a surface per unit area, is a key considera...
Airborne laser scanning (ALS) technology is receiving increasing attention in forestry. So far, ALS ...
The transmittance of laser pulses through the forest canopy was studied as a function of forest attr...
The capability of a model based on Large-Eddy Simulations (LES) to reproduce turbulence measurements...
The capability of a model based on Large-Eddy Simulations (LES) to reproduce turbulence measurements...
Protection forest management requires reliable data on the structural characteristics of forest stan...
Today, airborne laser scanning (ALS) is the standard method for detailed topographic data acquisitio...