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WIND SPEED RETRIEVAL BY MEANS OF X-BAND COSMO-SKYMED SAR DATA, WITH APPLICATION TO COASTAL CIRCULATION MODELING

机译:借助于X波段Cosmo-Skymed SAR数据,风速检索,应用于沿海循环建模

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In this paper, the capabilities of X-band COSMOSkyMed SAR data are investigated for both wind speed estimation purposes and for the improvement of coastal circulation modeling. The data set consists of 60 X-band Level 1B Multi-Look Ground Detected ScanSAR HugeRegion COSMO-SkyMed SAR data, gathered in the Southern Tyrrhenian Sea during the summer and winter seasons of 2010. Wind speed is estimated by means of a SAR wind speed retrieval based on the azimuth cut-off procedure. Wind direction is provided by means of a SAR retrieval approach based on Discrete Wavelet Transform. After comparison with the provided ground truth data, SAR-derived wind fields and ECMWF data are used to construct a blended wind product regularly sampled in both space and time. The resulting wind field will be used to force the Princeton Ocean Model, which has been implemented in a Southern Tyrrhenian Sea coastal area to simulate winddriven costal circulation processes.
机译:本文研究了X频带COSMOSKYMED SAR数据的能力,用于风速估计目的,用于改善沿海循环建模。数据集由60 X波段级别1B多样化地面检测到的Scansar Hugeregion Cosmo-Skymed SAR数据,在夏季和冬季的2010年冬季举行的Tyrrhenian海中聚集在南部。风速估计是SAR风速根据方位角截止程序检索。通过基于离散小波变换的SAR检索方法提供风向。与所提供的地面真理数据进行比较后,使用SAR导出的风力字段和ECMWF数据来构建在空间和时间内定期采样的混合风产品。由此产生的风场将用于迫使普林斯顿海洋模型,该模型已在南部的Tyrrhenian海洋沿海地区实施,以模拟卷绕昂贵的循环过程。

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