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首页> 外文期刊>Journal of hydrometeorology >Estimating the Accuracy of Polarimetric Radar–Based Retrievals of Drop-Size Distribution Parameters and Rain Rate: An Application of Error Variance Separation Using Radar-Derived Spatial Correlations
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Estimating the Accuracy of Polarimetric Radar–Based Retrievals of Drop-Size Distribution Parameters and Rain Rate: An Application of Error Variance Separation Using Radar-Derived Spatial Correlations

机译:估计基于极化雷达的液滴尺寸分布参数和降雨率的准确性:使用雷达衍生空间相关性的误差方差分离的应用

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摘要

The accuracy of retrieving the two drop size distribution (DSD) parameters, median volume diameter (D0), and normalized intercept parameter (NW), as well as rain rate (R), from polarimetric C-band radar data obtained during a cool-season, long-duration precipitation event in Huntsville, Alabama, is examined. The radar was operated in a special "near-dwelling" mode over two video disdrometers (2DVD) located 15 km away. The polarimetric radar–based retrieval algorithms for the DSD parameters and rain rate were obtained from simulations using the 2DVD measurements of the DSD. A unique feature of this paper is the radarbased estimation of the spatial correlation functions of the two DSD parameters and rain rate that are used to estimate the "point-to-area variance. A detailed error variance separation is performed, including the aforementioned point-to-area variance, along with variance components due to the retrieval algorithm error, radar measurement error, and disdrometer sampling error. The spatial decorrelation distance was found to be smallest for the R (4.5 km) and largest forD0 (8.24 km). For log10(NW), it was 7.22 km. The proportion of the variance of the difference between radar-based estimates and 2DVD measurements that could be explained by the aforementioned errors was 100%, 57%, and 73% for D0, log10(NW), and R, respectively. The overall accuracy of the radar-based retrievals for the particular precipitation event quantified in terms of the fractional standard deviation were estimated to be 6.8%, 6%, and 21% forD0, log10(NW), and R, respectively. The normalized bias was ,1%. These correspond to time resolution of ;3 min and spatial resolution of ;1.5 km.
机译:从冷却期间获得的极化C波段雷达数据中检索两个液滴尺寸分布(DSD)参数,中值体积直径(D0)和归一化截距参数(NW)以及降雨率(R)的准确性。季节,检查了阿拉巴马州亨茨维尔的长期降水事件。雷达以特殊的“近距离居住”模式在位于15公里之外的两个视频测速仪(2DVD)上运行。使用DSD的2DVD测量结果通过模拟获得了基于极化雷达的DSD参数和降雨率检索算法。本文的独特功能是基于雷达的两个DSD参数和降雨率的空间相关函数估计,这些函数用于估计“点到区域方差。进行了详细的误差方差分离,包括上述点-区域差异以及由于检索算法误差,雷达测量误差和测速仪采样误差引起的方差分量,发现空间解相关距离对于R(4.5 km)最小,对于D0(8.24 km)最大。 log10(NW)为7.22 km。D0,log10(NW)可以解释为基于雷达的估计值与2DVD测量值之间的差异的方差的比例分别为100%,57%和73%对于D0,log10(NW)和D10,用分数标准偏差量化的特定降水事件的基于雷达的反演的总体准确性估计为6.8%,6%和21%。 R,各自y。归一化偏差为,1%。这些对应于; 3分钟的时间分辨率和; 1.5 km的空间分辨率。

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