会议论文详细信息
Wake Conference 2015
Offshore wind farm flow measured by complementary remote sensing techniques: radar satellite TerraSAR-X and lidar windscanners
Schneemann, J.^1 ; Hieronimus, J.^1 ; Jacobsen, S.^2 ; Lehner, S.^2 ; Kühn, M.^1
ForWind-University of Oldenburg, Institute of Physics, Ammerländer Heerstr. 136, Oldenburg
26129, Germany^1
DLR-Maritime Safety and Security Lab, Henrich-Focke-Str. 4, Bremen
28199, Germany^2
关键词: Doppler lidar systems;    Freestream conditions;    Ground-based scanning;    Measurement sites;    Remote sensing techniques;    Spatial resolution;    Wind speed measurement;    Wind turbine wakes;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/625/1/012015/pdf
DOI  :  10.1088/1742-6596/625/1/012015
来源: IOP
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【 摘 要 】

Scanning Doppler lidar systems offer continuous wind measurements with some kilometres of range and a spatial distribution of concurrent measurements down to some metres. The synthetic aperture radar (SAR) satellite TerraSAR-X is capable to cover offshore areas of hundreds of square kilometres and to obtain wind data spatially distributed with some tens of metres. Images can be taken up to twice a day when the satellite passes the measurement site. Simultaneous wind speed measurements with ground based scanning Doppler lidar and TerraSAR-X in the region of the offshore wind farm "alpha ventus" in the German North Sea were collected. A comparison of both systems in free stream conditions is performed by extrapolating the lidardata to the measurement height of the radar satellite assuming a logarithmic wind profile. In wake conditions the wake tracks obtained by lidar and TerraSAR-X are compared. In free stream conditions the comparison reveals a mean absolute wind velocity difference ≤ 0.4 m/s in two of the four considered cases and 1.1 m/s in one case. The fourth case shows a bad agreement due to a unusually low radar backscatter in the satellite's measurement. In wake conditions the wind turbine wakes could be tracked in the lidar and the satellite data. The comparison for the considered case reveals similar wake tracks in principle, but no matching due to the time difference of the measurements and the lower spatial resolution of the radar measurements.

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