• Corpus ID: 133767797

Wind prediction modelling and validation using coherent Doppler LIDAR data

@inproceedings{Mughal2016WindPM,
  title={Wind prediction modelling and validation using coherent Doppler LIDAR data},
  author={Muhammad Omer Mughal},
  year={2016}
}
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References

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Wind farm characterization and control using coherent Doppler lidar
Wind measurements are fundamental inputs for the evaluation of potential energy yield and performance of wind farms. Three-dimensional scanning coherent Doppler lidar (CDL) may provide a new basis
Evaluating various lidar-based wind analysis schemes against independent observations [presentation]
Doppler lidar can observe the fourdimensional structure of the atmosphere at high spatial and temporal resolution, however its measurements of the wind are restricted to the component of the velocity
Scanning Doppler Lidar for Input into Short-Term Wind Power Forecasts
AbstractScanning Doppler lidar is a promising technology for improvements in short-term wind power forecasts since it can scan close to the surface and produce wind profiles at a large distance
Comparison of 2nd generation LiDAR wind measurement technique with CFD numerical modelling
With the rapid increase in both on and offshore wind turbine deployment there is a requirement for a better understanding of the flow field in which such devices are deployed. Greater understanding
A sensitivity study of the WRF model in wind simulation for an area of high wind energy
Validated adjustment of remote sensing bias in complex terrain using CFD
The horizontal wind speed deduced by conicallyscanning lidar can be subject to differences in comparison to that measured by co-located cup anemometers when the flow is non-uniform across the lidar
Assimilating Coherent Doppler Lidar Measurements into a Model of the Atmospheric Boundary Layer. Part II: Sensitivity Analyses
Abstract A series of trials are performed to evaluate the sensitivity of a 4DVAR algorithm for retrieval of microscale wind and temperature fields from single-Doppler lidar data. These trials use
Surface Wind Regionalization over Complex Terrain: Evaluation and Analysis of a High-Resolution WRF Simulation
This study analyzes the daily-mean surface wind variability over an area characterized by complex topography through comparing observations and a 2-km-spatial-resolution simulation performed with the
Theoretical and CFD Analysis of Pulsed Doppler Lidar Wind Profile Measurement Process in Complex Terrain
Accuracy of Lidar remote sensors for wind energy has been previously reported. Coherent Doppler lidars have shown very high correlation with calibrated cup anemometers in flat terrain, both onshore
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