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Extinction-to-backscatter ratios of lofted aerosol layers observed during the first three months of CALYPSO measurements

机译:在Calypso测量的前三个月观察到的倾向于反向散射的令人震撼的嘴唇溶解层

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Case studies from the first three months of the Cloud and Aerosol Lidar and Infrared Pathfinder Spaceborne Observations (CALYPSO) measurements of lofted aerosol layers are analyzed using transmittance [Young, 1995] and two-wavelength algorithms [Vaughan et al., 2004] to determine the aerosol extinction-to-backscatter ratios at 532 and 1064 nm. The transmittance method requires clear air below the layer so that the transmittance through the layer can be determined. Suitable scenes are selected from the browse images and clear air below features is identified by low 532 nm backscatter signal and confirmed by low depolarization and color ratios. The transmittance and two-wavelength techniques are applied to a number of lofted layers and the extinction-to-backscatter ratios are compared with values obtained from the CALIPSO aerosol models [Omar et al., 2004]. The results obtained from these studies are used to adjust the aerosol models and develop observations based extinction-to-backscatter ratio look-up tables and phase functions. Values obtained by these techniques are compared to Sa determinations using other independent methods with a goal of developing probability distribution functions of aerosol type-specific extinction to backscatter ratios.
机译:使用透射率[Young,1995]和双波长算法[Vaughan等,2004]来分析从云和气溶胶激光葡萄球的前三个月和红外探伤率和红外探伤率的星球出版物(Calypso)测量的案例研究气溶胶在532和1064nm处消失 - 反向散射比率。透射率方法需要在层下方清除空气,从而可以确定通过层的透射率。从浏览图像中选择合适的场景,并且通过低532nm反向散射信号识别出低于532nm的透明空气,并通过低去极化和颜色比率确认。将透射率和双波长技术施加到多个倾向层,并将灭绝反散射比与从Calipso气溶胶模型获得的值进行比较[Omar等,2004]。从这些研究中获得的结果用于调节气溶胶模型,并基于基于灭绝 - 反向散射比的观察结果查找表和相位函数。将通过这些技术获得的值与使用其他独立方法的S A 测定进行比较,其目的是开发气溶胶类型特异性灭绝的概率分布函数以反向散射比率。

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