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首页> 外文期刊>Journal of Applied Meteorology >Cirrus cloud properties derived from POLDER-1/ADEOS polarized radiances; first validation using a ground-based lidar network
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Cirrus cloud properties derived from POLDER-1/ADEOS polarized radiances; first validation using a ground-based lidar network

机译:从POLDER-1 / ADEOS极化辐射得出的卷云特性;首次使用地面激光雷达网络进行验证

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摘要

Bidirectional polarized reflectances measured with the POLDER-I instrument on board Advanced Earth Ob- serving Satellite-1 have been used to infer cloud altitude and thermodynamical phase (ice/liquid) at a global scale. This paper presents a validation of these properties for cirrus clouds. The validation presented here is based on comparisons between POLDER-1 retrievals and measurements collected with a ground-based lidar network. The scale differences between POLDER measurements and lidar data are treated by selecting homo- geneous and stable cloud layers. These comparisons show that the cloud altitude retrieval with POLDER is valid for optically thick cloud, and nonvalid for semitransparent and thin cirrus clouds. The limitations of the cloud altitude retrieval method are analyzed by using both comparisons between POLDER and lidar and simulations of the bidirectional polarized reflectances performed with a radiative transfer code to assess a threshold of validity of the POLDER retrieval method. The comparisons of lidar and POLDER data shoW that the cloud thermodynamical phase (ice/liquid) retrieval is satisfactory, and examples of cloud thermodynamical phase retrieval are presented as a function of cloud temperatures.
机译:使用先进地球观测卫星1上的POLDER-I仪器测得的双向偏振反射率已用于推断全球范围内的云层高度和热力学相(冰/液)。本文对卷云的这些特性进行了验证。此处提供的验证基于POLDER-1检索结果与基于地面激光雷达网络收集的测量值之间的比较。 POLDER测量结果和激光雷达数据之间的尺度差异可以通过选择均匀且稳定的云层来处理。这些比较表明,使用POLDER进行云高度反演对光学上厚的云有效,对半透明和薄卷云无效。通过同时使用POLDER和激光雷达之间的比较以及使用辐射转移码执行的双向偏振反射率的仿真来评估POLDER检索方法的有效性阈值,分析了云层高度检索方法的局限性。激光雷达和POLDER数据的比较表明,云的热力学相(冰/液体)反演是令人满意的,并且介绍了云的热力学相作为云温度的函数的示例。

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