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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >A triple-frequency approach to retrieve microphysical snowfall parameters
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A triple-frequency approach to retrieve microphysical snowfall parameters

机译:三频的方法来检索微观物理学的降雪参数

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Backscattering and extinction properties of various snow particle models are studied for three typical cloud radar frequency ranges, namely Ku band, Ka band, and W band, both in terms of their individual scattering properties as well as averaged over size distributions. Models studied include soft spheres, randomly oriented pristine nonspherical particles and complex aggregates, as well as horizontally aligned spheroids. It is shown that the concurrent use of K_u/K_a band and K_a/W band dual wavelength ratios (DWR) allows for a separation of different snow particle habits. It is further shown that triple-frequency approaches constrain the slope parameter of exponential size distributions more tightly than conventional single DWR approaches can. Uncertainties introduced by unknown mass-size relations for different snow particle habits remain a challenge when mass-related quantities are to be derived. Attenuation by snow, especially at W band, is found to potentially alter these results, albeit moderately, without affecting the general conclusions. Sensitivity studies performed with respect to cutoffs in the simulated size distribution highlight potential benefits of including larger particles in future scattering databases.
机译:反向散射和灭绝的属性各种雪粒子模型进行了研究三种典型云雷达频率范围,即Ku波段、Ka波段和W波段个人的散射特性以及平均值大小分布。随机模型研究包括软球,面向原始nonspherical粒子和复杂的总量,以及水平球状体保持一致。并发使用K_u / K_a乐队和K_a / W波段双波长比值(DWR)允许分离不同的雪粒子的习惯。进一步表明,三频的方法吗限制的斜率参数指数大小分布比传统的更紧密单一的DWR方法。引入未知mass-size关系不同的雪粒子习惯仍然是一个挑战当相关质量数量派生。衰减的雪,特别是在W波段,发现有可能改变这些结果,尽管适度,不影响一般结论。关于短裤的模拟大小分布突出的潜在益处包括在未来更大的粒子散射数据库。

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