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SAR observation and numerical modeling of tidal current wakes at the East China Sea offshore wind farm

机译:东海近海风电场的SAR观测和潮流尾流数值模拟

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摘要

A TerraSAR-X (TS-X) Synthetic Aperture Radar (SAR) image acquired at the East China Sea offshore wind farm presents distinct wakes at a kilometer scale on the lee of the wind turbines. The presumption was that these wakes were caused by wind movement around turbine blades. However, wind analysis using spaceborne radiometer data, numerical weather prediction, and in situ measurements suggest that the prevailing wind direction did not align with the wakes. By analyzing measurement at the tidal gauge station and modeling of the tidal current field, these trailing wakes are interpreted to have formed when a strong tidal current impinged on the cylindrical monopiles of the wind turbines. A numerical simulation was further conducted to reproduce the tidal current wake under such conditions. Comparison of the simulated surface velocity in the wake region with the TS-X sea surface backscatter intensity shows a similar trend. Consequently, turbulence intensity (T.I.) of the tidal current wakes over multiple piles is studied using the TS-X observation. It is found that the T.I. has a logarithmic relation with distance. Furthermore, another case study showing wakes due to wind movement around turbine blades is presented to discuss the differences in the tidal current wakes and wind turbine wakes. The conclusion is drawn that small-scale wakes formed by interaction of the tidal current and the turbine piles could be also imaged by SAR when certain conditions are satisfied. The study is anticipated to draw more attentions to the impacts of offshore wind foundations on local hydrodynamic field.
机译:在东海海上风电场获取的TerraSAR-X(TS-X)合成孔径雷达(SAR)图像在风力涡轮机的风道上以千米为单位显示了不同的尾迹。推测是这些尾流是由于风力涡轮机叶片周围的运动引起的。但是,使用星载辐射计数据进行风分析,数值天气预报和原位测量表明,主导风向与尾波不一致。通过分析潮汐测量站的测量值和潮汐流场的建模,可以将这些尾随的尾流解释为当强潮汐流撞击到风力涡轮机的圆柱单桩上时形成的。进一步进行了数值模拟以再现在这种条件下的潮流尾流。 TS-X海面反向散射强度与尾流区模拟表面速度的比较显示了相似的趋势。因此,使用TS-X观测仪研究了多堆海潮的湍流强度(T.I.)。发现T.I.与距离成对数关系。此外,另一个案例研究显示了由于风围绕涡轮叶片运动而引起的尾流,以讨论潮流尾流和风力涡轮机尾流的差异。得出的结论是,当满足一定条件时,由潮流和涡轮桩相互作用形成的小规模尾流也可以通过SAR成像。预期该研究将引起更多关注海上风电基础对当地水动力场的影响。

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