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First observations of triple-frequency radar Doppler spectra in snowfall: Interpretation and applications

机译:降雪中三频雷达多普勒频谱的初步观测:解释和应用

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摘要

The potential of multifrequency Doppler spectra to constrain precipitation microphysics has so far only been exploited for dual-frequency spectra in rain. In this study, we extend the dual-frequency concept to triple-frequency Doppler radar spectra obtained during a snowfall event which included rimed and unrimed snow aggregates. A large selection of spectra obtained from low-turbulence regions within the cloud reveals distinctly different signatures of the derived dual spectral ratios. Due to the third frequency, a characteristic curve can be derived which is almost independent of the underlying particle size distribution and velocity-size relation. This approach provides new opportunities for validating existing and future snow scattering models and reveals how the information content of triple-frequency radar data sets can be further exploited for snowfall studies.
机译:迄今为止,多频多普勒频谱限制降水微物理学的潜力仅被用于雨中的双频频谱。在这项研究中,我们将双频概念扩展到降雪事件期间获得的三频多普勒雷达频谱,其中包括有边和无边的积雪。从云中低湍流区域获得的大量光谱图揭示了导出的双重光谱比的明显不同的特征。由于第三频率,可以得出几乎与下面的粒度分布和速度-尺寸关系无关的特性曲线。这种方法为验证现有和未来的雪散射模型提供了新的机会,并揭示了如何将三频雷达数据集的信息内容进一步用于降雪研究。

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