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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >The impact of ice cloud particle microphysics on the uncertainty of ice water content retrievals
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The impact of ice cloud particle microphysics on the uncertainty of ice water content retrievals

机译:冰云粒子微观物理对冰水含量反演不确定性的影响

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Ice water content (IWC) is a standard product of cloud radar measurements. In this work, cloud radar cross-sections of various ice clouds are modeled to examine the relationship between the radar signal and the IWC. We report that using backscatter signal at cloud radar wavelength to retrieve IWC results in large uncertainties. Particle size distribution is the primary cause for the uncertainty in the retrieved IWC at radar wavelengths, though particle shape and orientation also play significant roles. Particularly in this study, we demonstrate that using both transmitted waves through the clouds (extinction) and backscattered waves from the clouds to retrieve the mean particle size and then using the mean particle size for IWC retrieval reduces the uncertainty. IWC retrieval can be improved with size distribution derived from dual wavelength cloud radar.
机译:冰水含量(IWC)是云雷达测量的标准产品。在这项工作中,对各种冰云的云雷达横截面进行建模,以检查雷达信号与万国表之间的关系。我们报告说,使用云雷达波长处的反向散射信号来检索IWC会导致很大的不确定性。粒径分布是在雷达波长处获取的IWC不确定性的主要原因,尽管粒子的形状和方向也起着重要的作用。特别是在这项研究中,我们证明了既使用穿过云层的透射波(消光)又使用来自云层的反向散射波来获取平均粒径,然后将平均粒径用于IWC检索可以降低不确定性。利用双波长云雷达得出的尺寸分布可以改善IWC的检索。

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