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EVALUATION OF WIND VECTORS OBSERVED BY OCEANSAT-2 SCATTEROMETER USING STATISTICAL DISTRIBUTIONS

机译:使用统计分布评估Oceansat-2散射仪观察的风矢量

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Statistical distribution of wind speeds and directions observed by the Oceansat-2 scatterometer (OSCAT) over the global oceans are investigated to validate the wind data. Histograms of wind speeds and directions are calculated from the OSCAT wind data and compared with those of wind data from the ECMWF reanalysis to assess systematic errors. The calculated wind speed histograms clearly showed excess concentration at very low wind speed ranges. Dependence on the cross-track wind vector cell location, and differences between the ascending and descending paths, and right and left swaths, found in the previous version, were reduced significantly. Frequency distribution of the wind directions relative to the spacecraft flight direction showed that wind vectors of the OSCAT wind exhibit systematic directional preference relative to the antenna beam directions. The directional modulation relative to the antenna beams significantly varies with wind speed and cross-track cell location. The artificial directivity is considered to be caused by imperfections in the instrument calibration, wind retrieval algorithm, and geophysical model function.
机译:研究了Oceansat-2散射仪(OSCAT)在全球海洋上观察到的风速和方向的统计分布,以验证风数据。风速和方向的直方图由OSCAT风数据计算,并与来自EcMWF再分析的风数据相比,以评估系统误差。计算的风速直方图在非常低的风速范围内清楚地显示出多余的浓度。依赖于交叉轨道风向量单元位置,以及在先前版本中发现的上升和下降路径之间的差异和左右条静脉,显着减少。风向相对于航天器飞行方向的频率分布显示,OSCAT风的风矢量相对于天线束方向具有系统的方向偏好。相对于天线梁的定向调制显着随风速和交叉轨道单元位置而变化。人工方向性被认为是由仪器校准,风检测算法和地球物理模型功能的缺陷引起的。

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