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Adjustment of wind-drift effect for real-time systematic error correction in radar rainfall data

机译:调整风漂移效应以实时校正雷达降雨数据中的误差

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摘要

An effective bias correction procedure using gauge measurement is a significant step for radar data processing to reduce the systematic error in hydrological applications. In these bias correction methods, the spatial matching of precipitation patterns between radar and gauge networks is an important premise. However, the wind-drift effect on radar measurement induces an inconsistent spatial relationship between radar and gauge measurements as the raindrops observed by radar do not fall vertically to the ground. Consequently, a rain gauge does not correspond to the radar pixel based on the projected location of the radar beam. In this study, we introduce an adjustment method to incorporate the wind-drift effect into a bias correlation scheme. We first simulate the trajectory of raindrops in the air using downscaled three-dimensional wind data from the weather research and forecasting model (WRF) and calculate the final location of raindrops on the ground. The displacement of rainfall is then estimated and a radar–gauge spatial relationship is reconstructed. Based on this, the local real-time biases of the bin-average radar data were estimated for 12 selected events. Then, the reference mean local gauge rainfall, mean local bias, and adjusted radar rainfall calculated with and without consideration of the wind-drift effect are compared for different events and locations. There are considerable differences for three estimators, indicating that wind drift has a considerable impact on the real-time radar bias correction. Based on these facts, we suggest bias correction schemes based on the spatial correlation between radar and gauge measurements should consider the adjustment of the wind-drift effect and the proposed adjustment method is a promising solution to achieve this.
机译:使用量规测量的有效偏差校正程序是雷达数据处理中减少水文应用系统误差的重要步骤。在这些偏差校正方法中,雷达和仪表网络之间降​​水模式的空间匹配是重要前提。但是,由于雷达观测到的雨滴没有垂直降落到地面,风漂移对雷达测量的影响导致了雷达与仪表测量之间空间关系的不一致。因此,基于雷达波束的投影位置,雨量计不对应于雷达像素。在这项研究中,我们介绍了一种将风漂移效应纳入偏差相关方案的调整方法。我们首先使用来自天气研究和预报模型(WRF)的降维三维风数据来模拟空气中雨滴的轨迹,然后计算地面上雨滴的最终位置。然后估算降雨的位移,并重建雷达与量规的空间关系。基于此,针对12个选定事件估计了bin平均雷达数据的本地实时偏差。然后,针对不同的事件和位置,比较了参考平均本地雨量,平均本地偏差和在不考虑风漂移效应的情况下计算出的调整后的雷达降水量。三个估算器之间存在相当大的差异,这表明风漂移对实时雷达偏差校正有很大影响。基于这些事实,我们建议基于雷达和仪表测量值之间的空间相关性的偏差校正方案应考虑风向漂移效应的调整,所提出的调整方法是实现这一目标的有希望的解决方案。

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