Two synchronized continuous wave scanning lidars are used to study the coherence of the along-wind and across-wind velocity components. The goal is to evaluate the potential of the lidar technology for application in wind engineering. The wind lidars were installed on the Lysefjord Bridge during four days in May 2014 to monitor the wind field in the horizontal plane upstream of the bridge deck. Wind records obtained by five sonic anemometers mounted on the West side of the bridge are used as reference data. Single- and two-point statistics of wind turbulence are studied, with special emphasis on the root-coherence and the co-coherence of turbulence. A four-parameter decaying exponential function has been fitted to the measured co-coherence,...
Knowledge about turbulence in the wind helps estimate and optimize the profitability of wind turbine...
The paper presents the measurement strategy and data set collected during the COTUR (COherence of TU...
The method and results of lidar studies of spatiotemporal variability of wind turbulence in the atm...
A single pulsed Doppler wind lidar, deployed at the FINO1 platform in the North Sea, has been used t...
AbstractA single pulsed Doppler wind lidar, deployed at the FINO1 platform in the North Sea, has bee...
Three synchronized pulsed Doppler wind lidars were deployed from May 2016 to June 2016 on the shores...
Remote wind sensing can complement traditional anemometry at a bridge site and contribute to an impr...
Modeling of the systematic errors in the second-order moments of wind speeds measured by continuousw...
Feasibilities of determination of the wind turbulence parameters from data measured by the Stream Li...
Wind velocity measurement devices based on the remote optical sensing, lidars, are extensively appli...
Light Detection and Ranging (LIDAR) systems are able to measure the speed of incoming wind before it...
Wind measurements using classical profiling lidars suffer from systematic measurement errors in comp...
This paper combines the research methodologies of scaled wind turbine model experiments in wind tun...
Wind measurements using classical profiling lidars suffer from systematic measurement errors in comp...
Knowledge about turbulence in the wind helps estimate and optimize the profitability of wind turbine...
The paper presents the measurement strategy and data set collected during the COTUR (COherence of TU...
The method and results of lidar studies of spatiotemporal variability of wind turbulence in the atm...
A single pulsed Doppler wind lidar, deployed at the FINO1 platform in the North Sea, has been used t...
AbstractA single pulsed Doppler wind lidar, deployed at the FINO1 platform in the North Sea, has bee...
Three synchronized pulsed Doppler wind lidars were deployed from May 2016 to June 2016 on the shores...
Remote wind sensing can complement traditional anemometry at a bridge site and contribute to an impr...
Modeling of the systematic errors in the second-order moments of wind speeds measured by continuousw...
Feasibilities of determination of the wind turbulence parameters from data measured by the Stream Li...
Wind velocity measurement devices based on the remote optical sensing, lidars, are extensively appli...
Light Detection and Ranging (LIDAR) systems are able to measure the speed of incoming wind before it...
Wind measurements using classical profiling lidars suffer from systematic measurement errors in comp...
This paper combines the research methodologies of scaled wind turbine model experiments in wind tun...
Wind measurements using classical profiling lidars suffer from systematic measurement errors in comp...
Knowledge about turbulence in the wind helps estimate and optimize the profitability of wind turbine...
The paper presents the measurement strategy and data set collected during the COTUR (COherence of TU...
The method and results of lidar studies of spatiotemporal variability of wind turbulence in the atm...