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The accuracy of space-borne scatterometers at high wind speeds: an integrated study using ERS1, ERS2 and NSCAT data

机译:高风速时空散射仪的准确性:使用ERS1,ERS2和NSCAT数据进行综合研究

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Satellite scatterometer winds are commonly validated by comparing them to buoy observations and/or numerical model wind analyses. However, the empirical scatterometer algorithm has been calibrated against a subset of the buoy and/or numerical model winds. Thus, this approach is only useful for evaluating the robustness of the empirical fit of the scatterometer algorithm to the buoy and/or numerical model winds. It cannot detect the errors in the scatterometer winds due to inherent inaccuracy of the buoy and numerical model winds. Using an alternate approach based on surface pressure measurements, we demonstrate the existence of a low-bias at high wind speeds (greater than 20 m/s) in the buoy and numerical model winds that is consistent with previous theoretical results. To assess to what extent this bias is carried over to the ERS and NSCAT scatterometer winds, we introduce a validation method based on the University f Washington planetary boundary layer model. This method quantifies the accuracy of scatterometer winds using sea level pressure observations. Buoy pressure observations are seen to be more robust than the winds in high wind conditions since they are less affected by high sea states, wave sheltering, buoy motion and other effects. An empirical correction for the bias in ERS and NSCAT winds is provided.
机译:通过将它们与浮标观测和/或数值模型风分析进行比较,通常通过验证卫星散射仪风。然而,经验散射仪算法已经针对浮标和/或数值模型风的子集进行校准。因此,该方法仅用于评估散射仪算法对浮标和/或数值模型风的经验性拟合的鲁棒性。由于浮标和数值模型风的固有不准确,它无法检测到散射仪风中的错误。使用基于表面压力测量的替代方法,我们证明了在浮标和数值模型风中的高风速(大于20米/秒)的低偏置,这与先前的理论结果一致。为了评估这种偏差在多大程度上被传送到ERS和NSCAT散射仪风中,我们介绍了基于大学华盛顿行星边界层模型的验证方法。该方法使用海平面压力观测量化散射仪风的准确性。浮标压力观测被认为比高风能的风更稳健,因为它们受高海态,波浪遮蔽,浮标运动和其他效果的影响。提供了对ERS和NSCAT风的偏置的实证校正。

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