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Polarimetric Radar Relations for Quantification of Snow Based on Disdrometer Data

机译:基于Discrometer数据的雪量化偏振雷达关系

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Accurate measurements of snow amounts by radar are very difficult to achieve. The inherent uncertainty in radar snow estimates that are based on the radar reflectivity factor Z is caused by the variability of snow particle size distributions and snow particle density as well as the large diversity among snow growth habits. In this study, a novel method for snow quantification that is based on the joint use of radar reflectivity Z and specific differential phase K-DP is introduced. An extensive dataset of 2D-video-disdrometer measurements of snow in central Oklahoma is used to derive polarimetric relations for liquid-equivalent snowfall rate S and ice water content IWC in the forms of bivariate power-law relations S = gamma(1)K(DP)(alpha 1)Z(beta 1) and IWC = gamma(2)K(DP)(alpha 2)Z(beta 2), along with similar relations for the intercept N-0s and slope Delta(s) of the exponential snow size distribution. The physical basis of these relations is explained. Their multipliers are sensitive to variations in the width of the canting angle distribution and to a lesser extent the particles' aspect ratios and densities, whereas the exponents are practically invariant. This novel approach is tested against the S(Z) relation using snow disdrometer measurements in three geographical regions (Oklahoma, Colorado, and Canada). Significant improvement in snow estimates relative to the traditional Z-based methods is demonstrated.
机译:用雷达精确测量雪量是非常困难的。基于雷达反射率因子Z的雷达雪估计的固有不确定性是由雪粒大小分布和雪粒密度的可变性以及雪生长习性的巨大差异造成的。本文介绍了一种基于雷达反射率Z和特定差分相位K-DP联合使用的积雪量化新方法。俄克拉荷马州中部的一个广泛的2D视频测雪仪测量数据集用于推导液体当量降雪率S和冰水含量IWC的极化关系,其形式为双变量幂律关系S=伽马(1)K(DP)(α1)Z(β1)和IWC=伽马(2)K(DP)(α2)Z(β2),以及指数雪径分布的截距N-0和坡度增量的类似关系。解释了这些关系的物理基础。它们的乘数对倾斜角分布宽度的变化敏感,在较小程度上对粒子的纵横比和密度敏感,而指数实际上是不变的。通过在三个地理区域(俄克拉荷马州、科罗拉多州和加拿大)使用雪密度计测量,对这种新方法进行了S(Z)关系测试。与传统的基于Z的方法相比,降雪量估计有显著改进。

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