The results of spatiotemporal visualization of the kinetic energy of turbulence, its dissipation rate, and integral scale of turbulence from measurements by a Windcube 200s lidar with the use of the conical scanning by the probing beam in the atmospheric boundary layer are presented. When evaluating the parameters of wind turbulence, the lidar data filtering procedure was applied. This procedure allows obtaining acceptable results with a non-zero probability of bad estimate of the radial velocity
The use of light detection and ranging (LiDAR) instruments offers many potential benefits to the win...
The retrieval of turbulence parameters with profiling Doppler wind lidars (DWLs) is of high interest...
Turbulent velocity spectra, as measured by a scanning pulsed wind lidar (WindCube), are analyzed. Th...
The method and results of lidar studies of spatiotemporal variability of wind turbulence in the atm...
We present an innovative data processing method for Doppler beam swinging (DBS) scanning wind lidar,...
The method of maximum of the function of accumulated spectra (MFAS) was used for the first time to e...
Knowledge about turbulence in the wind helps estimate and optimize the profitability of wind turbine...
A single pulsed Doppler lidar was successfully deployed to measure air flow and turbulence over the ...
Time-accurate information on the turbulent parameters of the atmospheric boundary layer is relevant ...
Techniques for extracting boundary layer parameters from measurements of a short pulse CO2 Doppler L...
The understanding of the sources, spatial distribution and temporal variability of turbulence in the...
Modeling of the systematic errors in the second-order moments of wind speeds measured by continuousw...
Based on explicit, experimentally proven formulae, an ameliorated lidar scheme for turbulence retrie...
We present two methods to characterize turbulence in the turbine inflow using radial velocity measu...
This data set contains profiles of estimates for wind and turbulence variables derived from Doppler ...
The use of light detection and ranging (LiDAR) instruments offers many potential benefits to the win...
The retrieval of turbulence parameters with profiling Doppler wind lidars (DWLs) is of high interest...
Turbulent velocity spectra, as measured by a scanning pulsed wind lidar (WindCube), are analyzed. Th...
The method and results of lidar studies of spatiotemporal variability of wind turbulence in the atm...
We present an innovative data processing method for Doppler beam swinging (DBS) scanning wind lidar,...
The method of maximum of the function of accumulated spectra (MFAS) was used for the first time to e...
Knowledge about turbulence in the wind helps estimate and optimize the profitability of wind turbine...
A single pulsed Doppler lidar was successfully deployed to measure air flow and turbulence over the ...
Time-accurate information on the turbulent parameters of the atmospheric boundary layer is relevant ...
Techniques for extracting boundary layer parameters from measurements of a short pulse CO2 Doppler L...
The understanding of the sources, spatial distribution and temporal variability of turbulence in the...
Modeling of the systematic errors in the second-order moments of wind speeds measured by continuousw...
Based on explicit, experimentally proven formulae, an ameliorated lidar scheme for turbulence retrie...
We present two methods to characterize turbulence in the turbine inflow using radial velocity measu...
This data set contains profiles of estimates for wind and turbulence variables derived from Doppler ...
The use of light detection and ranging (LiDAR) instruments offers many potential benefits to the win...
The retrieval of turbulence parameters with profiling Doppler wind lidars (DWLs) is of high interest...
Turbulent velocity spectra, as measured by a scanning pulsed wind lidar (WindCube), are analyzed. Th...