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Mathematical-physical framework for retrieval of rain DSD properties from dual-frequency Ku-Ka-band satellite radar

机译:从双频Ku-Ka波段雷达获取雨DSD特性的数学-物理框架

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In developing the upcoming Global Precipitation Measurement (GPM) mission, a dual-frequency Ku-Ka-band radar system will be used to measure rainfall in such a fashion that the reflectivity ratio intrinsic to the measurement will be sensitive to underlying variations in the drop size distribution (DSD) of rain. This will enable improved techniques for retrieving rain rates, which are dependent upon several key properties of the DSD. This study examines this problem by considering a three-parameter set defined by liquid water content (W), DSD effective radius (r(e)), and DSD effective variance (v(e)). Using radiative transfer simulations, this parameter set is shown to be related to a radar reflectivity factor and specific attenuation in such a fashion that details of the DSDs are immaterial under constant W, and thus effectively represent important variations in DSD that affect rain rate but with a minimal number of parameters. The analysis also examines the effectiveness of including some measure of mean Doppler fall velocity of raindrops ((v) over bar), given that the fundamental properties of a given precipitation situation are uniquely defined by a combination of a drop mass spectrum and drop vertical velocity spectrum. The results of this study have bearing on how future dual-frequency precipitation retrieval algorithms could be formulated to optimize the sensitivity to underlying DSD variability, a problem that has greatly upheld past progress in radar rain retrieval.
机译:在制定即将到来的全球降水测量(GPM)任务时,将使用双频Ku-Ka波段雷达系统以这种方式测量降雨,以使测量固有的反射率比对降雨中潜在的变化敏感。雨的大小分布(DSD)。这将使改进的用于检索降雨率的技术成为可能,该技术取决于DSD的几个关键属性。本研究通过考虑由液态水含量(W),DSD有效半径(r(e))和DSD有效方差(v(e))定义的三参数集来研究此问题。使用辐射传输模拟,该参数集显示为与雷达反射率因子和特定衰减相关,其方式为在恒定W下DSD的细节不重要,因此有效地表示了DSD中影响降雨率的重要变化,但最少数量的参数。假设给定降水情况的基本特征是由液滴质谱和液滴垂直速度共同唯一定义的,该分析还检验了包括一定量的雨滴平均多普勒下降速度((v)超过条形)的有效性。光谱。这项研究的结果关系到如何制定未来的双频降水检索算法,以优化对基本DSD变异性的敏感性,这个问题在很大程度上已经支持了雷达降雨检索的过去进展。

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