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首页> 外文期刊>Advances in Atmospheric Sciences >Improvement of radar quantitative precipitation estimation based on real-time adjustments to Z-R relationships and inverse distance weighting correction schemes
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Improvement of radar quantitative precipitation estimation based on real-time adjustments to Z-R relationships and inverse distance weighting correction schemes

机译:基于实时调整Z-R关系和反距离权重校正方案的雷达定量降水估计的改进

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摘要

The errors in radar quantitative precipitation estimations consist not only of systematic biases caused by random noises but also spatially nonuniform biases in radar rainfall at individual rain-gauge stations. In this study, a real-time adjustment to the radar reflectivity-rainfall rates (Z-R) relationship scheme and the gauge-corrected, radar-based, estimation scheme with inverse distance weighting interpolation was developed. Based on the characteristics of the two schemes, the two-step correction technique of radar quantitative precipitation estimation is proposed. To minimize the errors between radar quantitative precipitation estimations and rain gauge observations, a real-time adjustment to the Z-R relationship scheme is used to remove systematic bias on the time-domain. The gauge-corrected, radar-based, estimation scheme is then used to eliminate non-uniform errors in space. Based on radar data and rain gauge observations near the Huaihe River, the two-step correction technique was evaluated using two heavy-precipitation events. The results show that the proposed scheme improved not only in the underestimation of rainfall but also reduced the root-mean-square error and the mean relative error of radar-rain gauge pairs.
机译:雷达定量降水估计中的误差不仅包括由随机噪声引起的系统偏差,而且还包括各个雨量计站雷达雨量的空间不均匀偏差。在这项研究中,开发了一种实时调整雷达反射率-降雨率(Z-R)关系方案以及基于距离校正的基于雷达的反距离加权插值估计方案。根据两种方案的特点,提出了雷达定量降水估算的两步校正技术。为了最大程度地减少雷达定量降水估计和雨量计观测值之间的误差,使用Z-R关系方案的实时调整来消除时域上的系统偏差。然后,使用经过轨距校正的,基于雷达的估计方案来消除空间中的非均匀误差。基于淮河附近的雷达数据和雨量计观测结果,通过两次强降水事件评估了两步校正技术。结果表明,所提出的方案不仅改善了降雨的低估,而且减小了雷达-雨量规对的均方根误差和平均相对误差。

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