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A comparative study of aerosol microphysical properties retrieved from ground-based remote sensing and aircraft in situ measurements during a Saharan dust event

机译:撒哈拉尘埃事件期间从地面遥感和飞机原位测量获得的气溶胶微物理性质的比较研究

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reveal the presence of dust layers between 3 and 5 km a.s.l. with volume concentrations of the coarse spheroid mode up to 60 mu m(3) cm(3). The combined use of the regularization and LIRIC methods reveals the night-to-day evolution of the vertical structure of the mineral dust microphysical properties and offers complementary information to that from column-integrated variables retrieved from passive remote sensing. Additionally, lidar depolarization profiles and LIRIC retrieved volume concentration are compared with aircraft in situ measurements. This study presents for the first time a comparison of the total volume concentration retrieved with LIRIC with independent in situ measurements, obtaining agreement within the estimated uncertainties for both methods and quite good agreement for the vertical distribution of the aerosol layers. Regarding the depolarization, the first published data set of the CAS-POL for polarization ratios is presented here and qualitatively compared with the lidar technique.In this work we present an analysis of aerosol microphysical properties during a mineral dust event taking advantage of the combination of different state-of-the-art retrieval techniques applied to active and passive remote sensing measurements and the evaluation of some of those techniques using independent data acquired from in situ aircraft measurements. Data were collected in a field campaign performed during a mineral dust outbreak at the Granada, Spain, experimental site (37.16 degrees N, 3.61 degrees W, 680ma.s.l.) on 27 June 2011. Column-integrated properties are provided by sun-and star-photometry, which allows for a continuous evaluation of the mineral dust optical properties during both day and nighttime. Both the linear estimation and AERONET (Aerosol Robotic Network) inversion algorithms are applied for the retrieval of the column-integrated microphysical particle properties. In addition, vertically resolved microphysical properties are obtained from a multi-wavelength Raman lidar system included in EARLINET (European Aerosol Research Lidar Network), by using both LIRIC (Lidar Radiometer Inversion Code) algorithm during daytime and an algorithm applied to the Raman measurements based on the regularization technique during nighttime. LIRIC retrievals
机译:揭示了在3至5公里a.s.l.之间存在灰尘层粗球体模式的体积浓度高达60μm(3)cm(3)。正则化方法和LIRIC方法的结合使用揭示了矿尘微物理性质垂直结构的夜间演变,并提供了与从被动遥感中检索到的列综合变量的补充信息。此外,将激光雷达的去极化曲​​线和LIRIC检索到的体积浓度与飞机原位测量结果进行了比较。这项研究首次提出了使用LIRIC进行的总体积浓度与独立原位测量的比较,这两种方法在估计的不确定性范围内均取得了一致,并且气溶胶层的垂直分布也取得了很好的一致性。关于去极化,此处介绍了CAS-POL极化率的第一个公开数据集,并与激光雷达技术进行了定性比较。在这项工作中,我们利用矿物粉尘事件的组合分析了矿物尘埃事件期间的气溶胶微物理性质。适用于主动和被动遥感测量的不同最新检索技术,以及使用从飞机现场测量获得的独立数据对其中一些技术的评估。数据是在2011年6月27日在西班牙格拉纳达的实验地点(北纬37.16度,西经3.61度,680ma.sl)进行的一次矿物尘暴爆发期间进行的野外运动中收集的。柱与星的综合性质由太阳和恒星提供-光度法,可以在白天和晚上连续评估矿物粉尘的光学特性。线性估计和AERONET(气溶胶机器人网络)反演算法都可用于检索与色谱柱结合的微物理粒子特性。此外,通过白天使用LIRIC(激光雷达辐射计反演代码)算法和应用于基于拉曼测量的算法,可以从EARLINET(欧洲气溶胶研究激光雷达网络)中包含的多波长拉曼激光雷达系统获得垂直分辨的微物理特性。关于夜间的正则化技术LIRIC检索

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