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首页> 外文期刊>Tellus, Series B. Chemical and Physical Meteorology >Airborne lidar measurements of aerosol spatial distribution and optical properties over the Atlantic Ocean during a European pollution outbreak of ACE-2
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Airborne lidar measurements of aerosol spatial distribution and optical properties over the Atlantic Ocean during a European pollution outbreak of ACE-2

机译:欧洲ACE-2爆发期间机载激光雷达对大西洋上空气溶胶空间分布和光学特性的测量

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摘要

Airborne lidar measurements of the aerosol spatial distribution and optical properties associated with an European pollution outbreak which occured during the Second Aerosol Characterization Experiment (ACE-2) are presented. Size distribution spectra measured over the ocean near Sagres (Portugal), on-board the Research Vessel Vodyanitsky and on-board the Avion de Recherche Atmospherique et Teledetection (ARAT) have been used to parameterize the aerosol vertical distribution. This parameterization, which is essential to the analysis of airborne lidar measurements, has been validated via closure experiments on extinction coefficient profiles and aerosol optical depth (AOD). During the studied event, AOD's retrieved from lidar measurements at 0.73 μm range between 0.055 and 0.10. The parameterized aerosol vertical distribution has been used to shift AOD retrievals from 0.73 to 0.55 μm to enable comparison with other remote sensing instruments. At the latter wavelength, AOD's retrieved from lidar measurements range between 0.08 and 0.14. An agreement better than 20% is obtained between AOD's derived from lidar and sunphotometer measurements made at the same time and place over the ocean near the coast. However, large differences are observed with the AOD estimated from Meteosat imagery in the same area. These differences are thought to be caused by large uncertainties associated with the Meteosat sensitivity for small AOD's or by the presence of thin scattered clouds. Lidar-derived particulate extinction profiles and scattering coefficient profiles measured by a nephelometer mounted on the ARAT, in a different part of the plume, were found in good agreement, which could be an indication that absorption by pollution aerosols is small and/or that soot is present in small amounts in the European pollution plume. Lidar measurements have also been used to differentiate the contribution of different aerosol layers to the total AOD. It is shown that the AOD in the marine atmospheric boundary layer (MABL) can contribute as much as 70% of the total AOD in some regions. At 0.73 μm, the AOD in the continental plume was observed to diminish with the distance to the coastline from 0.04 to 0.03.
机译:提出了在第二次气溶胶表征实验(ACE-2)期间发生的与欧洲污染爆发相关的气溶胶空间分布和光学特性的机载激光雷达测量。在萨格里什(葡萄牙)附近的海洋上,在研究船Vodyanitsky船上和在Avion de Recherche大气和遥测(ARAT)船上测量的尺寸分布谱已用于参数化气溶胶垂直分布。该参数化是分析机载激光雷达测量结果必不可少的参数,已通过对消光系数曲线和气溶胶光学深度(AOD)进行的封闭实验进行了验证。在研究事件期间,从0.73μm的激光雷达测量中获得的AOD在0.055至0.10之间。参数化的气溶胶垂直分布已用于将AOD检索值从0.73微米转换为0.55微米,以便与其他遥感仪器进行比较。在后一个波长处,从激光雷达测量中获得的AOD范围在0.08至0.14之间。从激光雷达得出的AOD与同时在靠近海岸的海洋上进行的日光光度计测量得出的AOD优于20%。然而,在同一地区,根据气象卫星图像估计的AOD值存在很大差异。这些差异被认为是由于Meteosat对小AOD的敏感性相关的不确定性较大,或存在稀疏的散射云所致。发现由安装在ARAT上的浊度计在烟羽的不同部分测得的激光雷达衍生的颗粒消光图和散射系数图非常吻合,这可能表明污染气溶胶的吸收很小和/或烟so少量存在于欧洲污染羽流中。激光雷达测量也已用于区分不同气溶胶层对总AOD的贡献。结果表明,在某些地区,海洋大气边界层(MABL)中的AOD可能占总AOD的70%。在0.73μm处,观察到大陆羽中的AOD随着距海岸线的距离从0.04到0.03而减小。

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