lidarwind is an open-source Python project to retrieve wind speed and direction profiles from Doppler lidar observations from the WindCube-200s, and it was developed to be easy to use. It can retrieve wind profiles from the 6-beam and DBS scanning strategies and allow users to set the signal-to-noise ratio threshold to reduce the noise. It also calculates the Reynolds stress tensor matrix elements from the 6-beam observations. lidarwind is a result of an effort to create an environment where it would be flexible and easy to process the observations from the WindCube Doppler lidar
Scanning Doppler Lidars have become more prominent in the wind energy industry for a variety of appl...
Turbulent velocity spectra, as measured by a scanning pulsed wind lidar (WindCube), are analyzed. Th...
Knowledge about turbulence in the wind helps estimate and optimize the profitability of wind turbine...
lidarwind is an open-source Python project to retrieve wind speed and direction profiles from Dopple...
We present an innovative data processing method for Doppler beam swinging (DBS) scanning wind lidar,...
This is a short review of scanning Doppler wind lidar for wind energy applications. It is one of an...
Doppler pulse lidars are increasingly common as a tool for monitoring hazardous wind phenomena. Poss...
The accurate measurement of wind profiles in the planetary boundary layer (PBL) is important not onl...
Data from a doppler lidar wind profiler at the Chiwaukee Prairie, WI air monitoring site. There are ...
This paper will provide an overview of some projects in support of Wind Energy development involving...
This data set contains Doppler lidar wind profiles calculated from VAD (Velocity-Azimuth Display) sc...
We use Doppler lidar wind profiles from six locations around the globe to evaluate the wind profile ...
Wind lidars use the optical Doppler effect to measure the atmospheric wind with high spatial and tem...
Wind lidar technology has been increasingly used for wind energy applications for over a decade. Dur...
The article is aimed at presenting a semi-empirical model coded and computed in the programming lang...
Scanning Doppler Lidars have become more prominent in the wind energy industry for a variety of appl...
Turbulent velocity spectra, as measured by a scanning pulsed wind lidar (WindCube), are analyzed. Th...
Knowledge about turbulence in the wind helps estimate and optimize the profitability of wind turbine...
lidarwind is an open-source Python project to retrieve wind speed and direction profiles from Dopple...
We present an innovative data processing method for Doppler beam swinging (DBS) scanning wind lidar,...
This is a short review of scanning Doppler wind lidar for wind energy applications. It is one of an...
Doppler pulse lidars are increasingly common as a tool for monitoring hazardous wind phenomena. Poss...
The accurate measurement of wind profiles in the planetary boundary layer (PBL) is important not onl...
Data from a doppler lidar wind profiler at the Chiwaukee Prairie, WI air monitoring site. There are ...
This paper will provide an overview of some projects in support of Wind Energy development involving...
This data set contains Doppler lidar wind profiles calculated from VAD (Velocity-Azimuth Display) sc...
We use Doppler lidar wind profiles from six locations around the globe to evaluate the wind profile ...
Wind lidars use the optical Doppler effect to measure the atmospheric wind with high spatial and tem...
Wind lidar technology has been increasingly used for wind energy applications for over a decade. Dur...
The article is aimed at presenting a semi-empirical model coded and computed in the programming lang...
Scanning Doppler Lidars have become more prominent in the wind energy industry for a variety of appl...
Turbulent velocity spectra, as measured by a scanning pulsed wind lidar (WindCube), are analyzed. Th...
Knowledge about turbulence in the wind helps estimate and optimize the profitability of wind turbine...