Unusual wintertime transport of Saharan dust to Sofia, Bulgaria, detected by lidar

A. Deleva, Z. Peshev, L. Vulkova, T. Dreischuh
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引用次数: 2

Abstract

We report on lidar detection and characterization of Saharan dust in the atmosphere above Sofia, Bulgaria, during the months of February in the years 2017 and 2018. Presented are results of aerosol measurements performed by using twochannel lidar based on a frequency-doubled pulsed Nd:YAG laser emitting at 1064 nm and 532 nm. We studied and characterized optical, geometrical, and dynamical properties of the registered aerosol fields. Vertical profiles of the atmospheric backscatter coefficient and color-coded diagrams in height-time coordinates based on range-corrected lidar signals are obtained in order to analyze the aerosol/dust layer density distribution and dynamics. Based on the retrieved backscatter profiles at the two lidar wavelengths, the corresponding vertical profiles of the backscatter-related Ǻngström exponents were calculated in order to characterize qualitatively the dominant particle-size fractions in the aerosol/dust layers observed. The lidar results obtained were combined with air-transport modelling and forecasting data in order to derive conclusions concerning the aerosol’s origin and type. It is shown that on the days of lidar observations meteorological conditions in Sofia region, as well as the vertical structure and aerosol composition of the near surface atmospheric layers, have been significantly influenced by the Saharan dust intrusions. Analyzing the aerosol Ångström exponent, an anomalous height distribution of the dust particle size fractions is ascertained and discussed. The results obtained confirm the tendency of increasing frequency of transporting considerable amounts of warm air masses from North Africa to Europe during the winter, indicating seasonal deviations in the air-intercontinental circulation systems. They also illustrate the potential of using lidar approaches to help monitor ongoing processes of local, regional, and global climate changes.
激光雷达探测到的撒哈拉沙尘在冬季向保加利亚索非亚的不寻常运输
我们报告了2017年和2018年2月保加利亚索非亚上空大气中撒哈拉沙尘的激光雷达探测和特征。本文介绍了双通道激光雷达在1064 nm和532 nm波长下的双频脉冲Nd:YAG激光对气溶胶的测量结果。我们研究并表征了注册气溶胶场的光学、几何和动力学特性。利用距离校正后的激光雷达信号,得到大气后向散射系数的垂直剖面和高时坐标的彩色编码图,分析了气溶胶/粉尘层的密度分布和动态。为了定性表征观测到的气溶胶/尘埃层中的主要粒径组分,基于两个激光雷达波长的后向散射剖面,计算了相应的后向散射相关Ǻngström指数的垂直剖面。将获得的激光雷达结果与空气输送模拟和预报数据相结合,以得出有关气溶胶来源和类型的结论。结果表明,在激光雷达观测日数上,索非亚地区的气象条件以及近地表大气的垂直结构和气溶胶组成受到撒哈拉沙尘入侵的显著影响。通过对气溶胶Ångström指数的分析,确定并讨论了粉尘粒径分数的异常高度分布。结果证实,在冬季从北非向欧洲输送大量暖气团的频率有增加的趋势,这表明空气-洲际环流系统存在季节性偏差。它们还说明了使用激光雷达方法帮助监测地方、区域和全球气候变化的持续过程的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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