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Transport of aerosols over the French Riviera - link between ground-based lidar and spaceborne observations

机译:在法国里维埃拉的运输雾化 - 基于地面的激光乐队和星载观测之间的联系

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For the first time, a 355 nm backscatter N-2-Raman lidar has been deployed on the western part of the French Riviera to investigate the vertical aerosol structure in the troposphere. This lidar system, based at the AERONET site of Toulon-La Garde, performed continuous measurements from 24 June to 17 July 2014, within the framework of the multidisciplinary program Mediterranean Integrated Studies at the Regional and Local Scales (MISTRALS). By coupling these observations with those of the spaceborne instruments Cloud-Aerosol LIdar with Orthogonal Polarization (CALIOP), Spinning Enhanced Visible and InfraRed Imager (SEVIRI), and Moderate Resolution Imaging Spectroradiometers (MODIS), the spatial extents of the aerosol structures are investigated. The origins of the aerosol plumes are determined using back trajectories computed by the Hybrid Single Particle Lagrangian Integrated Trajectory (HYSPLIT). This synergy allowed us to highlight plumes of particulate pollutants moving in the low and medium free troposphere (up to similar to 5 km above the mean sea level) towards the French Riviera. This pollution originates from the Spanish coast, more particularly from Costa Blanca (including Murcia) and Costa Brava-Costa Daurada (including Barcelona). It is mainly due to traffic, but also to petrochemical activities in these two regions. Desert aerosol plumes were also sampled by the lidar. The sources of desert aerosols have been identified as the Grand Erg Occidental and Grand Erg Oriental. During desert dust events, we highlight significant differences in the optical characteristics in terms of the backscatter-to-extinction ratio (BER, inverse of the lidar ratio) between the planetary boundary layer, with 0.024 sr(-1) (similar to 42 sr), and the free troposphere, with 0.031 sr(-1) (similar to 32 sr). These differences are greatly reduced in the case of pollution aerosol plume transport in the free troposphere (i.e., 0.021 and 0.025 sr(-1)). Transported pollution aerosols appear to have similar BER to what is emitted locally. Moreover, using the correlation matrix between lidar aerosol extinction profiles as a function of altitude, we find that during transport events in the low free troposphere, aerosols may be transferred into the planetary boundary layer. We also note that the relative humidity, which is generally higher in the planetary boundary layer (> 80 %), is found to have no significant effect on the BER.
机译:这是第一次,355 nm后散射N-2-Raman Lidar已经部署在法国里维埃拉的西部,以研究对流层的垂直气溶胶结构。这款LIDAR系统位于Toulon-La Garde的AeroNet遗址,于2014年6月24日在2014年6月24日进行了连续测量,内部在区域和地方秤(Mistrals)的多学科计划地中海综合研究框架内。通过将这些观察与具有正交偏振(Caliop)的星式载体LiDAR耦合,纺丝增强的可见光和红外成像器(Seviri)和中等分辨率成像分光剂仪(MODIS),研究了气溶胶结构的空间范围。使用由混合单粒子拉格朗日集成轨迹(HYSPLIT)计算的后轨迹确定气溶胶羽毛的起源。这一协同作用使我们能够突出呈碎片污染物在较低和中等免费对流层(最高可达5公里以上的平均海平面)朝向法国里维埃拉。这种污染源自西班牙海岸,更特别是哥斯达布兰卡(包括穆尔西亚)和哥斯达布拉瓦 - 哥斯达达图拉达(包括巴塞罗那)。它主要是由于交通,也是在这两个地区的石化活动。沙漠气溶胶羽毛也被激光雷达采样。沙漠气雾剂来源已被确定为宏伟ERG ENDIDENTAL和GRAND ERG Oriental。在沙漠尘埃事件期间,在行星边界层之间的反向散射到消光比(LIDAR比率的逆转录比的角度来看,我们突出了光学特性的显着差异,0.024 SR(-1)(类似于42 SR )和自由的对流层,0.031 sr(-1)(类似于32 sr)。在游离对流层中的污染气溶胶羽流量(即0.021和0.025 SR(-1))的情况下,这些差异大大降低。运输的污染气溶胶似乎与当地发出的类似BER。此外,使用LIDAR气溶胶消光分布之间的相关矩阵作为高度的函数,发现在低自由对流层中的运输事件中,气溶胶可以转移到行星边界层。我们还注意到,在行星边界层(> 80%)中通常更高的相对湿度对BER没有显着影响。

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