首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The Latitudinal Variability of Oceanic Rainfall Properties and Its Implication for Satellite Retrievals: 2. The Relationships Between Radar Observables and Drop Size Distribution Parameters
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The Latitudinal Variability of Oceanic Rainfall Properties and Its Implication for Satellite Retrievals: 2. The Relationships Between Radar Observables and Drop Size Distribution Parameters

机译:海洋降雨特性的纬度变异及其对卫星检索的含义:2。雷达可观察到和跌落尺寸分布参数之间的关系

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In this study, we develop statistical relationships between radar observables and drop size distribution properties in different latitude bands to inform radar rainfall retrieval techniques and understand underpinning microphysical reasons for differences reported in the literature between satellite mean zonal rainfall products at high latitudes (up to a factor 2 between products over ocean). A major assumption in satellite retrievals is the attenuation-reflectivity relationships for convective and stratiform precipitation. They are found to systematically produce higher attenuation than our relationships with all latitudes included or within individual latitude bands (except in the tropics). The scatter around fitted curves approximating the radar reflectivity-mass-weighted diameter Dm relationship and the dual-frequency ratio (ratio of Ka-to Ku-band reflectivities)-Dm relationships is found to be large and of the same magnitude. This result suggests that the added value of two radar frequencies to improve the Dm retrieval from space seems limited. In contrast, the relationship between Dm and the attenuation/reflectivity ratio is robust and not dependent on latitude. Direct relationships between rainfall and either reflectivity or attenuation are also found to be very robust. Attenuation-reflectivity, Dm-reflectivity, and rainfall rate-reflectivity relationships in the Southern Hemisphere high latitude and Northern Hemisphere polar latitude bands are fundamentally different from those at other latitude bands, producing smaller attenuation, much larger Dm, and lower rainfall rates. This implies that specific relationships need to be used for these latitude bands in radar rainfall retrieval techniques using such relationships.
机译:在这项研究中,我们在不同纬度带中的雷达可观察到和跌落尺寸分布特性之间开发统计关系,以通知雷达降雨检索技术,了解高纬度地区卫星平均降雨产品的文献中报告的差异下蛋白微物理原因(最多在海洋上的产品之间的因子2)。卫星检索的主要假设是对流和层状沉淀的衰减反射率关系。它们被发现系统地产生比我们与所有纬度所包括的所有纬度或单个纬度带内的关系更高的衰减(除了热带地区)。围绕拟合曲线的散射近似雷达反射率 - 质量加权直径DM关系和双频率比(Ka-to Ku-Band反射率的比率)-dm关系被发现大并且幅度相同。该结果表明,两个雷达频率的附加值为改善从空间的DM检索似乎有限。相反,DM与衰减/反射率比之间的关系是强大的,而不是依赖于纬度。还发现降雨与反射率或衰减之间的直接关系是非常稳健的。南半球高纬度和北半球极地纬度频段的衰减反射率,DM反射率和降雨率 - 反射率关系与其他纬度带的那些不同,产生较小的衰减,更大的DM和降雨率。这意味着使用这种关系需要用于雷达降雨检索技术中的这些纬度带的特定关系。

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