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Retrieval of optical and microphysical properties of transported Saharan dust over Athens and Granada based on multi-wavelength Raman lidar measurements: Study of the mixing processes

机译:基于多波长拉曼激光雷达测量的雅典撒哈拉尘埃传输撒哈拉粉尘的光学和微神科性质的检索:混合过程研究

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In this paper we extract the aerosol microphysical properties for a collection of mineral dust cases measured by multi-wavelength depolarization Raman lidar systems located at the National Technical University of Athens (NTUA, Athens, Greece) and the Andalusian Institute for Earth System Research (IISTA-CEAMA, Granada, Spain). The lidar-based retrievals were carried out with the Spheroidal Inversion eXperiments software tool (SphInX) developed at the University of Potsdam (Germany). The software uses regularized inversion of a two-dimensional enhancement of the Mie model based on the spheroid-particle approximation with the aspect ratio determining the particle shape. The selection of the cases was based on the transport time from the source regions to the measuring sites. The aerosol optical depth as measured by AERONET ranged from 0.27 to 0.54 (at 500 nm) depending on the intensity of each event. Our analysis showed the hourly mean particle linear depolarization ratio and particle lidar ratio values at 532 nm ranging from 11 to 34% and from 42 to 79 sr respectively, depending on the mixing status, the corresponding air mass pathways and their transport time. Cases with shorter transport time showed good agreement in terms of the optical and SphInX-retrieved microphysical properties between Athens and Granada providing a complex refractive index value equal to 1.4 + 0.004i. On the other hand, the results for cases with higher transport time deviated from the aforementioned ones as well as from each other, providing, in particular, an imaginary part of the refractive index ranging from 0.002 to 0.005. Reconstructions of two-dimensional shape-size distributions for each selected layer showed that the dominant effective particle shape was prolate with diverse spherical contributions. The retrieved volume concentrations reflect overall the intensity of the episodes.
机译:在本文中,我们提取了由位于雅典国家技术大学(NTUA,雅典,希腊)和安达卢斯地球系统研究所(IISTA -ceama,格拉纳达,西班牙)。基于LIDAR的检索是用在波茨坦大学(德国)开发的球形反转实验软件工具(Sphinx)进行。该软件使用基于与确定粒子形状的纵横比的球体颗粒近似来规则化反转MIE模型的二维增强。这些情况的选择基于从源区到测量位置的传输时间。由AERONET测量的气溶胶光学深度范围为0.27至0.54(500nm),这取决于每个事件的强度。我们的分析显示,根据混合状态,相应的空气质量途径及其运输时间,我们分析分别为每小时平均颗粒线性去极化比率和532nm的粒子线性去极化比和粒子激光雷达比例分别为11至34%和42至79 sr。运输时间较短的案例在雅典和格拉纳达之间的光学和狮身态检索的微神经性质方面表现出良好的一致性,提供等于1.4 + 0.004i的复杂折射率值。另一方面,具有较高传输时间的情况的结果偏离上述的情况以及彼此彼此偏离,特别是折射率的虚部,范围为0.002至0.005。每个选定层的二维形状分布的重建显示,主导有效的颗粒形状具有不同的球形贡献。检索的体积浓度反映了集发作的强度。

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  • 来源
    《Atmospheric environment》 |2019年第10期|116824.1-116824.15|共15页
  • 作者单位

    Natl Tech Univ Athens Sch Appl Math & Phys Sci Laser Remote Sensing Unit Phys Dept Zografos 15780 Greece;

    German Remote Sensing Datactr DFD German Aerosp Ctr DLR Wessling Germany|Potsdam Univ Inst Math D-14469 Potsdam Germany;

    Andalusian Inst Earth Syst Res IISTA CEAMA Granada 18006 Spain|Univ Granada Dept Appl Phys E-18071 Granada Spain;

    Potsdam Univ Inst Math D-14469 Potsdam Germany;

    Natl Tech Univ Athens Sch Appl Math & Phys Sci Laser Remote Sensing Unit Phys Dept Zografos 15780 Greece;

    Andalusian Inst Earth Syst Res IISTA CEAMA Granada 18006 Spain|Univ Granada Dept Appl Phys E-18071 Granada Spain|Inst Res & Nucl Energy IPEN Sao Paulo Brazil;

    Andalusian Inst Earth Syst Res IISTA CEAMA Granada 18006 Spain|Univ Granada Dept Appl Phys E-18071 Granada Spain;

    Andalusian Inst Earth Syst Res IISTA CEAMA Granada 18006 Spain|Univ Granada Dept Appl Phys E-18071 Granada Spain;

    Andalusian Inst Earth Syst Res IISTA CEAMA Granada 18006 Spain|Univ Granada Dept Appl Phys E-18071 Granada Spain|Univ Nacl Colombia Sci Fac Dept Phys Medellin Colombia;

    Andalusian Inst Earth Syst Res IISTA CEAMA Granada 18006 Spain|Univ Granada Dept Appl Phys E-18071 Granada Spain;

    Andalusian Inst Earth Syst Res IISTA CEAMA Granada 18006 Spain|Univ Granada Dept Appl Phys E-18071 Granada Spain|Univ Valladolid GOA Paseo Belen 7 E-47011 Valladolid Spain;

    Kuwait Univ Dept Phys POB 5969 Sofat 13060 Kuwait;

    Natl Tech Univ Athens Sch Appl Math & Phys Sci Laser Remote Sensing Unit Phys Dept Zografos 15780 Greece;

    Andalusian Inst Earth Syst Res IISTA CEAMA Granada 18006 Spain|Univ Granada Dept Appl Phys E-18071 Granada Spain;

    Natl Tech Univ Athens Sch Appl Math & Phys Sci Laser Remote Sensing Unit Phys Dept Zografos 15780 Greece;

    Natl Tech Univ Athens Sch Appl Math & Phys Sci Laser Remote Sensing Unit Phys Dept Zografos 15780 Greece;

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