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The dual-field-of-view polarization lidar technique: a new concept in monitoring aerosol effects in liquid-water clouds – theoretical framework

机译:双视场极化激光雷达技术:一种新概念在液体云中监测气溶胶作用 - 理论框架

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In a series of two articles, a novel, robust, and practicable lidar approach is presented that allows us to derive microphysical properties of liquid-water clouds (cloud extinction coefficient, droplet effective radius, liquid-water content, cloud droplet number concentration) at a height of 50–100m above the cloud base. The temporal resolution of the observations is on the order of 30–120s. Together with the aerosol information (aerosol extinction coefficients, cloud condensation nucleus concentration) below the cloud layer, obtained with the same lidar, in-depth aerosol–cloud interaction studies can be performed. The theoretical background and the methodology of the new cloud lidar technique is outlined in this article (Part?1), and measurement applications are presented in a companion publication (Part?2) (Jimenez et?al.,?2020a). The novel cloud retrieval technique is based on lidar observations of the volume linear depolarization ratio at two different receiver fields of view (FOVs). Extensive simulations of lidar returns in the multiple scattering regime were conducted to investigate the capabilities of a dual-FOV polarization lidar to measure cloud properties and to quantify the information content in the measured depolarization features regarding the basic retrieval parameters (cloud extinction coefficient, droplet effective radius). Key simulation results and the overall data analysis scheme developed to obtain the aerosol and cloud products are presented.
机译:在两种文章中,提出了一种新颖的,稳健和可行的激光雷达方法,使我们能够衍生液体水云的微妙性质(云消光系数,液滴有效半径,液体水含量,云液滴数浓度)云底座上方50-100米的高度。观察的时间分辨率约为30-120s。可以进行云层下方的气溶胶信息(气溶胶消光系数,云凝结核浓度),可以进行与相同的激光脉,深入的气溶胶云相互作用研究。本文(部分?1)中概述了新云激光雷达技术的理论背景和方法,并在伴侣出版物(部分?2)中提出了测量应用(JIMENEZ et?AL.,?2020A)。新颖的云检索技术基于两个不同接收器视野(FOV)的体积线性去极化比的LIDAR观察。进行了多次散射制度的LIDAR返回的广泛模拟,以研究双FOV偏振激光器的能力来测量云属性,并在测量的去极化特征中量化关于基本检索参数的测量的去极化特征中的信息内容(云消光系数,液滴有效半径)。展示了关键仿真结果和开发的整体数据分析方案,以获得气溶胶和云产品。

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