首页> 外文会议>International Laser Radar Conference >VERTICAL VARIATION OF OPTICAL PROPERTIES OF MIXED ASIAN DUST/POLLUTION PLUMES ACCORDING TO PATHWAY OF AIRMASS TRANSPORT OVER EAST ASIA
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VERTICAL VARIATION OF OPTICAL PROPERTIES OF MIXED ASIAN DUST/POLLUTION PLUMES ACCORDING TO PATHWAY OF AIRMASS TRANSPORT OVER EAST ASIA

机译:混合亚洲粉尘/污染羽毛光学性质的垂直变化,根据东亚航空运输路径

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We use five years (2009 - 2013) of multiwavelength Raman lidar measurements at Gwangju, Korea (35.10° N, 126.53° E) for the identification of changes of optical properties of East Asian dust in dependence of its transport path over China. Profiles of backscatter and extinction coefficients, lidar ratios, and backscatter-related Angstr?m exponents (wavelength pair 355/532nm) were measured at Gwangju. Linear particle depolarization ratios were used to identify East Asian dust layers. We used backward trajectory modelling to identify the pathway and the vertical position of dust-laden air masses over China during long-range transport. Most cases of Asian dust events can be described by the emission of dust in desert areas and subsequent transport over highly polluted regions of China. The Asian dust plumes could be categorized into two classes according to the height above ground in which these plumes were transported: (I) the dust layers passed over China at high altitude levels until arrival over Gwangju, and (II) the Asian dust layers were transported near the surface and the lower troposphere over industrialized areas before they arrived over Gwangju. We find that the optical characteristics of these mixed Asian dust layers over Gwangju differ in dependence of their vertical position above ground over China and the change of height above ground during transport. The mean linear particle depolarization ratio was 0.21±0.06 (at 532 nm), the mean lidar ratios were 52±7 sr at 355 nm and 53±8 sr at 532 nm, and the mean Angstr?m exponent was 0.74±0.31 in case I. In contrast, plumes transported at lower altitudes (case II) showed low depolarization ratios, and higher lidar ratio and ?ngstr?m exponents. The mean linear particle depolarization ratio was 0.13 ± 0.04, the mean lidar ratios were 63±9 sr at 355 nm and 62±8 sr at 532 nm, respectively, and the mean ?ngstr?m exponent was 0.98±0.51. These numbers show that the optical characteristics of mixed Asian plumes are more similar to optical characteristics of urban pollution.
机译:我们使用五年(2009 - 2013)在韩国,韩国,韩国(35.10°N,126.53°E)的多波长拉曼LIDAR测量,用于识别东亚粉尘的光学特性变化,依赖于中国的运输路径。在光州测量反向散射和消光系数,激光率比和反向散射系数和反向散射有关的盎司克赛M指数(波长对355 / 532nm)。线性颗粒去极化比率用于识别东亚除尘层。我们使用了向后轨迹建模,以识别在远程运输过程中尘埃加勒斯空气群众的途径和垂直位置。大多数亚洲尘埃事件的案件可以通过沙漠地区的灰尘排放和随后对中国高度污染地区的运输来描述。亚洲尘埃羽状物可根据地面以上的高度在这些羽状物被运送被分为两类:(I)在高空水平越过中国必须提前在光州的灰尘层,以及(ii)亚洲粉尘层是在他们到达光州之前,在工业化地区靠近表面和较低的对流层。我们发现,在光州的这些混合亚洲尘埃层的光学特性依赖于地面上层的垂直位置以及在运输过程中地上的高度变化。平均线性颗粒去极化率为0.21±0.06(在532nm),平均直流杆比在355nm处为52±7 sr,532nm处为53±8 sr,平均angstrΔm指数为0.74±0.31 I.相反,在较低海拔(案例II)下运输的羽毛显示出低的去极化比,更高的激光率比和ΔM指导。平均线性颗粒去极化比例为0.13±0.04,平均直流杆比分别为355nm和62±8 sr,分别为63±9 sr,分别为532nm,平均值为0.98±0.51。这些数字表明,混合亚洲羽羽的光学特性更类似于城市污染的光学特性。

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