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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Multi-wavelength Raman lidar, sun photometric and aircraft measurements in combination with inversion models for the estimation of the aerosol optical and physico-chemical properties over Athens, Greece
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Multi-wavelength Raman lidar, sun photometric and aircraft measurements in combination with inversion models for the estimation of the aerosol optical and physico-chemical properties over Athens, Greece

机译:多波长拉曼利刚雷达,太阳光度和飞机测量与雅典雅典气溶胶光学和物理化学特性估计的反演模型相结合

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A novel procedure has been developed to retrieve, simultaneously, the optical, microphysical and chemical properties of tropospheric aerosols with a multi-wavelength Raman lidar system in the troposphere over an urban site (Athens, Greece: 37.9° N, 23.6° E, 200 m a.s.l.) using data obtained during the European Space Agency (ESA) THERMOPOLIS project, which took place between 15–31 July 2009 over the Greater Athens Area (GAA). We selected to apply our procedure for a case study of intense aerosol layers that occurred on 20–21 July 2009. The National Technical University of Athens (NTUA) EOLE 6-wavelength Raman lidar system has been used to provide the vertical profiles of the optical properties of aerosols (extinction and backscatter coefficients, lidar ratio) and the water vapor mixing ratio. An inversion algorithm was used to derive the mean aerosol microphysical properties (mean effective radius (reff), single-scattering albedo ) and mean complex refractive index (m)) at selected heights in the 2–3 km height region. We found that reff was 0.14–0.4 (0.14) μm, ω was 0.63–0.88 (0.08) (at 532 nm) and m ranged from 1.44 (0.10) + 0.01 (0.01)i to 1.55 (0.12) + 0.06 (0.02)i, in good agreement (only for the reff values) with in situ aircraft measurements. The water vapor and temperature profiles were incorporated into the ISORROPIA II model to propose a possible in situ aerosol composition consistent with the retrieved m and values. The retrieved aerosol chemical composition in the 2–3 km height region gave a variable range of sulfate (0–60%) and organic carbon (OC) content (0–50%), although the OC content increased (up to 50%) and the sulfate content dropped (up to 30%) around 3 km height; the retrieved low value (0.63), indicates the presence of absorbing biomass burning smoke mixed with urban haze. Finally, the retrieved aerosol microphysical properties were compared with column-integrated sun photometer CIMEL data.
机译:已经开发了一种新的程序,同时地,在城市网站(雅典,希腊:37.9°N,23.6°E,200,对流层中的多波长拉曼LIDAR系统,以多波长拉曼LIDAR系统在对流层中进行多波长拉曼激光雷达系统。 M ASL)使用欧洲航天局(ESA)热点项目中获得的数据,该项目在2009年7月15日至31年间在大雅典地区(Gaa)之间进行。我们选择申请我们的程序,以便在2009年7月20日至21日发生的强烈气溶胶层的案例研究。国家技术大学(NTUA)Eole 6-波长拉曼Lidar系统已经用于提供光学的垂直轮廓气溶胶的性质(消光和后散系数,激光率比)和水蒸气混合比。在2-3km高度区域中,反演算法用于导出平均气溶胶微手术性质(平均有效半径(雷德),单次散射反玻璃)和平均复合折射率(M))。我们发现雷德夫为0.14-0.4(0.14)μm,ω为0.63-0.88(0.08)(0.08)(532nm),m范围为1.44(0.10)+ 0.01(0.01)I至1.55(0.12)+ 0.06(0.02)我非常协议(仅适用于雷德值),以原位飞机测量。将水蒸气和温度曲线掺入Isorropia II模型中,以提出与检索到的M和值一致的原位气溶胶组合物。 2-3km高度区域中的检索到的气溶胶化学成分产生了可变的硫酸盐(0-60%)和有机碳(OC)含量(0-50%),尽管OC含量增加(高达50%)硫酸盐含量下降(高达30%)大约3公里的高度;检索到的低值(0.63)表示存在吸收与城市雾霾混合的生物质燃烧的烟雾。最后,将检索到的气溶胶微神经性质与柱集成的太阳光度计CIMEL数据进行比较。

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