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Three-dimensional evolution of Saharan dust transport towards Europe based on a 9-year EARLINET-optimized CALIPSO dataset

机译:基于9年的耳环优化Calipso数据集的撒哈拉粉尘运输的三维演变

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In this study we use a new dust product developed using CALIPSO (Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation) observations and EARLINET (European Aerosol Research Lidar Network) measurements and methods to provide a 3-D multiyear analysis on the evolution of Saharan dust over North Africa and Europe. The product uses a CALIPSO L2 backscatter product corrected with a depolarization-based method to separate pure dust in external aerosol mixtures and a Saharan dust lidar ratio (LR) based on long-term EARLINET measurements to calculate the dust extinction profiles. The methodology is applied on a 9-year CALIPSO dataset (2007–2015) and the results are analyzed here to reveal for the first time the 3-D dust evolution and the seasonal patterns of dust over its transportation paths from the Sahara towards the Mediterranean and Continental Europe. During spring, the spatial distribution of dust shows a uniform pattern over the Sahara desert. The dust transport over the Mediterranean Sea results in mean dust optical depth (DOD) values up to 0.1. During summer, the dust activity is mostly shifted to the western part of the desert where mean DOD near the source is up to 0.6. Elevated dust plumes with mean extinction values between 10 and 75?Mm?1 are observed throughout the year at various heights between 2 and 6?km, extending up to latitudes of 40°?N. Dust advection is identified even at latitudes of about 60°?N, but this is due to rare events of episodic nature. Dust plumes of high DOD are also observed above the Balkans during the winter period and above northwest Europe during autumn at heights between 2 and 4?km, reaching mean extinction values up to 50?Mm?1. The dataset is considered unique with respect to its potential applications, including the evaluation of dust transport models and the estimation of cloud condensation nuclei (CCN) and ice nuclei (IN) concentration profiles. Finally, the product can be used to study dust dynamics during transportation, since it is capable of revealing even fine dynamical features such as the particle uplifting and deposition on European mountainous ridges such as the Alps and Carpathian Mountains.
机译:在这项研究中,我们使用使用Calipso(云 - 气溶胶激光乐队和红外探测器卫星观察)开发的新型粉尘产品观察和耳坠(欧洲气溶胶研究激光雷达网络)测量和方法,为撒哈拉尘埃的演变提供三维多年分析过度北非和欧洲。该产品采用CALIPSO L2反向散射产品,采用基于去极化的方法校正,以将外部气溶胶混合物和撒哈拉粉尘激光雷达比(LR)分离纯粉尘,基于长期的耳线测量来计算粉尘灭绝剖面。该方法适用于9年的Calipso数据集(2007-2015),此处分析了结果,以便首次揭示3-D粉尘演化和其运输路径从撒哈拉向地中海的运输路径上的季节性模式和大陆欧洲。在春天期间,灰尘的空间分布显示了撒哈拉沙漠的统一模式。地中海的灰尘运输导致平均灰尘光学深度(DOD)值高达0.1。在夏季,粉尘活动大多转移到沙漠的西部,在源附近的平均潜水率高达0.6。升高的灰尘羽毛,平均消光值在10到75Ω×1之间观察到,在每年观察到在2到6 km之间的各个高度,延伸到40°的纬度。即使在大约60°的纬度,尘埃平流也被鉴定为约60°,但这是由于罕见的情节性质。在冬季期间,在巴尔干的冬季和西北部高于2到4 km之间的秋季,欧洲高度的灰尘含量也在巴尔干,达到50?mm?1的平均灭绝值。对于其潜在应用,数据集被认为是独特的,包括对粉尘传输模型的评估和云凝结核(CCN)和冰核(IN)浓度谱的估计。最后,该产品可用于在运输过程中研究粉尘动态,因为它能够揭示甚至可以揭示诸如欧洲山区诸如阿尔卑斯和喀尔巴阡山脉的粒子上的微粒升高和沉积。
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