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Midlatitude cirrus classification at Rome Tor Vergata through a multichannel Raman-Mie-Rayleigh lidar

机译:通过多通道拉曼-米-瑞利激光雷达在罗马Tor Vergata进行的中纬卷云分类

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摘要

A methodology to identify and characterize cirrus clouds has been developed and applied to the multichannel-multiwavelength Rayleigh-Mie-Raman (RMR) lidar in Rome-Tor Vergata (RTV). A set of 167 cirrus cases, defined on the basis of quasi-stationary temporal period conditions, has been selected in a dataset consisting of about 500 h of nighttime lidar sessions acquired between February 2007 and April 2010. The derived lidar parameters (effective height, geometrical and optical thickness and mean back-scattering ratio) and the cirrus mid-height temperature (estimated from the radiosoundings of Pratica di Mare, WMO site #16245) of this sample have been analyzed by the means of a clustering multivariate analysis. This approach identified four cirrus classes above the RTV site: two thin cirrus clusters in mid and upper troposphere and two thick cirrus clusters in mid-upper troposphere. These results, which are very similar to those derived through the same approach in the lidar site of the Observatoire of Haute Provence (OHP), allows characterizing cirrus clouds over RTV site and attests the robustness of such classification. To have some indications about the cirrus generation methods for the different classes, the analyses of the extinction-to-backscatter ratio (lidar ratio, LReff), in terms of the frequency distribution functions and depending on the mid-height cirrus temperature have been performed. This study suggests that smaller (larger) ice crystals compose thin (thick) cirrus classes. This information, together with the value of relative humidity over ice (110 ± 30%), calculated through the simultaneous WV Raman measurements for the mid-tropospheric thin class, indicates that this class could be formed by an heterogeneous nucleation mechanism. The RTV cirrus results, re-computed through the cirrus classification by Sassen and Cho (1992), shows good agreement to other mid-latitude lidar cirrus observation for the relative occurrence of subvisible (SVC), thin and opaque cirrus classes (10%, 49% and 41%, respectively). The overall mean value of cirrus optical depth is 0.37 ± 0.18 , while most retrieved LReff values ranges between 10-60 sr and the estimated mean value is 31 ± 15 sr, similar to LR values of lower latitude cirrus measurements. The obtained results are consistent with previous studies conducted with different systems and confirm that cirrus classification based on a statistical approach seems to be a good tool both to validate the height-resolved cirrus fields, calculated by models, and to investigate the key processes governing cirrus formation and evolution. These are fundamental elements to improve the characterization of the cirrus optical properties and, thus, the determination of their radiative impact.
机译:已经开发出一种用于识别和表征卷云的方法,并将其应用于罗马多维尔塔(RTV)的多通道-多波长瑞利-米拉曼(RMR)激光雷达。在2007年2月至2010年4月之间获取的约500 h夜间激光雷达会话数据集中,选择了一组167个根据准平稳时间周期情况定义的卷云病例。得出的激光雷达参数(有效高度,通过聚类多元分析的方法分析了该样品的几何和光学厚度以及平均背向散射比)和卷云中高温度(根据Pratica di Mare的无线电声,WMO网站#16245估算)。这种方法确定了RTV站点上方的四个卷云类别:对流层中上层和对流层中上层中的两个厚层,以及对流层中上层中的两个厚层。这些结果与上普罗旺斯天文台(OHP)的激光雷达站点中通过相同方法得出的结果非常相似,可以表征RTV站点上的卷云,并证明了这种分类的鲁棒性。为了对不同类别的卷云的产生方法有一些指示,已经进行了消灭与后向散射比(激光雷达比,LReff)的分析,包括频率分布函数和中高卷云温度。 。这项研究表明,较小(较大)的冰晶构成薄(厚)卷云类别。通过同时对流层中层薄层的WV拉曼测量计算得出的这些信息以及相对冰上的相对湿度值(110±30%)表明,该层可能是由异质成核机制形成的。通过Sassen和Cho(1992)通过对卷积分类重新计算得出的RTV卷积结果显示,与其他中纬度激光雷达卷积观测结果相比,亚可见(SVC),稀薄和不透明卷积层的相对发生率(10%,分别为49%和41%)。卷云光学深度的总体平均值为0.37±0.18,而大多数检索到的LReff值在10-60 sr之间,估计的平均值为31±15 sr,类似于低纬度卷云测量的LR值。所得结果与先前在不同系统上进行的研究一致,并证实基于统计方法的卷云分类似乎是验证模型计算的高度分辨卷云场以及研究控制卷云关键过程的良好工具。形成和演化。这些是改善卷云光学特性表征的基本元素,因此可以确定其辐射影响。

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