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首页> 外文期刊>Optica pura y aplicada >Standardizing the determination of the molecular backscatter coefficient profiles for LALINET lidar stations using ERA-Interim Reanalysis
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Standardizing the determination of the molecular backscatter coefficient profiles for LALINET lidar stations using ERA-Interim Reanalysis

机译:使用ERA-临时再分析对LALINET激光雷达站的分子反向散射系数曲线的确定进行标准化

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摘要

The molecular backscatter signal is necessary in aerosol lidars to determine the aerosol backscatter and extinction. It is derived using atmospheric temperature and pressure profiles from simultaneous soundings or climatological values from radiosonde meas urements. In cases when no radiosonde measurements are available at or near the lidar stations the U.S. Standard Atmosphere is commonly used. Although the atmospheric reanalysis can also be used to obtain the atmospheric temperature and pressure profiles a t any station, we found no reports of its use for this purpose. Therefore, the goal of this research is to compare molecular backscatter coefficients derived from radiosonde measurements with ones derived using the ERA - Interim reanalysis and the U.S. Stand ard Atmosphere 1976 (USSA - 1976), for the locations of the lidar stations from the Latin America Lidar Network (LALINET). The differences between radiosonde measurements and ERA - Interim temperature profiles are smaller than the differences between radiosond e measurements and the USSA - 1976 temperature profiles. In many stations, the differences between the temperature in radiosonde measurements and ERA - Interim are smaller than 2 K and the greatest differences are about 4 K. However, the differences between te mperature in radiosonde measurements and in the USSA - 1976 are smaller than 10 K only in three stations, and the greatest differences are about 20 K . The profiles of relative difference s of the molecular backscatter coefficients between radiosonde measureme nts and ERA - Interim show negative values at most of the pressure levels. Positive values greater than 0.5 % are only observed above 8 km. However, the profiles of relative difference s of the molecular backscatter coefficients between radiosonde measurements and the USSA - 1976 shows positive values from surface to 12 km in all stations. Only in four stations are observed negative differences above 14 km with values smaller than - 5 %. Com odoro Rivadavia presents the best behavior because is located near to 45 degree of latitude, but even in this station the differences between radiosonde measurements and the USSA - 1976 are bigger than those observed between radiosonde measurements and ERA - I nterim.
机译:在气溶胶激光雷达中,分子反向散射信号对于确定气溶胶的反向散射和消光是必不可少的。它是根据大气温度和压力曲线从同时探空或从探空仪测量得到的气候学值得出的。如果在激光雷达站或其附近没有无线电探空仪测量可用,通常使用美国标准大气。尽管大气再分析也可用于获取任何站点的大气温度和压力曲线,但我们没有发现将其用于此目的的报道。因此,本研究的目的是比较从探空仪测量得出的分子反向散射系数与使用ERA-中期再分析和1976年美国标准大气(USSA-1976)得出的分子散射系数,以比较拉丁美洲的激光雷达站的位置。激光雷达网(LALINET)。探空仪测量值与ERA-临时温度曲线之间的差异小于探空仪测量值与USSA-1976温度曲线之间的差异。在许多台站中,探空仪测量的温度与ERA-Interim之间的温度差小于2 K,最大差约为4K。但是,探空仪测量的温度与USSA-1976之间的温度差小于10 K仅在三个站中,最大差约为20 K。探空仪测量值与ERA-Interim之间的分子反向散射系数的相对差s的图在大多数压力水平下均显示负值。仅在8 km以上才能看到大于0.5%的正值。但是,探空仪测量值与USSA-1976之间的分子后向散射系数相对差s的曲线在所有站中都显示出从地面到12 km的正值。仅在四个站点中,观察到14 km以上的负差值小于-5%。里瓦达维亚海军准将(Com odoro Rivadavia)表现最好,因为它位于纬度45度附近,但即使在该站中,探空仪测量值与USSA-1976之间的差异也大于探空仪测量值与ERA-Iterim之间的差异。

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