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Differential reflectivity and differential phase shift: Applications in radar meteorology

机译:差分反射率和差分相移:在雷达气象学中的应用

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The differential scattering properties of classes of hydrometeors at linear orthogonal polarizations provide potentially important differences which may be exploited for radar measurements of precipitation. The ratio of the reflectivity at horizontal (ZH) and vertical (ZV) polarizations may be combined with other radar measurements such as absolute reflectivity and differential phase shift to determine drop size distributions. Previous model calculations of differential reflectivity ZDR = 10 log (ZH/ZV) were made using Gans’ theory of scattering by spheroids. New calculations, using Waterman's T-matrix method, are in excellent agreement with Gans’ theory for raindrops at S-band wavelengths. The ZDR-differential phase shift combination, which need not depend on any absolute measurements, is shown to be a reasonable radar method for measuring two-parameter raindrop size distributions. Finally, calculations of ZDR for oblate hailstones indicate the possibility of uniquely detecting large, dry hail when the hail is falling with preferred orientation.
机译:线性正交极化上的水凝物类的差分散射特性提供了潜在的重要差异,可将其用于降水的雷达测量。可以将水平(ZH)和垂直(ZV)极化的反射率之比与其他雷达测量值(例如绝对反射率和差分相移)结合起来,以确定液滴尺寸分布。以前的模型是使用Gans球体散射理论对差分反射率ZDR = 10 log(ZH / ZV)进行模型计算的。使用Waterman的T矩阵方法进行的新计算与Gans的S波段波长雨滴理论非常吻合。不需要依赖任何绝对测量值的ZDR差分相移组合被证明是一种用于测量两参数雨滴大小分布的合理雷达方法。最后,扁冰雹的ZDR计算表明,当冰雹以首选方向下落时,可以唯一地检测大型干冰雹。

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