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Initial assessment of space-based lidar CALIOP aerosol and cloud layer structures through inter-comparison with aground-based back-scattering lidar and CloudSat

机译:通过与基于搁浅的背散散雷达和Cloudsat的相互比较来初步评估基于空间的LIDAR Caliop气溶胶和云层结构

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This study presents results of the intercomparison of aerosol/cloud top and bottom heights obtained from a space-borne active sensor Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) onboard CALIPSO, and the Cloud Profiling Radar (CPR) onboard CloudSat, and the space-borne passive sensor Moderate Resolution Imaging Spectroradiometer (MODIS) onboard Aqua, and ground-based 2-wavelenght polarization lidar system (532 and 1064 nm) at Seoul National University (SNU), Seoul, South Korea. This result confirms that the CALIPSO science team algorithms for the discrimination of cloud and aerosol as well as for the detection of layer top and base altitude provide reliable information both under cloud-free conditions and in cases of multiple aerosol layers underlying semi-transparent cirrus clouds. Simultaneous space-borne CALIOP, CPR and ground-based SNU lidar (SNU-L) measurements complement each other and can be combined to provide full information on the vertical distribution of aerosols and clouds, especially for thick opaque clouds. The aerosol extinction profiles from both lidars show good agreement for aerosols within the planetary boundary layer under cloud-free conditions and for the night-time CALIOP flight.
机译:本研究提出了从具有正交偏振(Caliop)车载Calipso的空间 - 传送的活性传感器云 - 气溶胶激光器和云分析雷达(CPR)船上Cloudsat上获得的气溶胶/云顶部和底部高度和底部高度的结果。传播被动传感器中度分辨率成像光谱仪(MODIS)板载Aqua,以及首尔国立大学(SNU),韩国首尔的地基2-波长极化激光雷达系统(532和1064纳米)。该结果证实,Calipso Science Team算法用于识别云和气溶胶的识别,以及在无云条件下和半透明卷云云下面的多个气溶胶层的情况下提供可靠的信息提供可靠的信息。同时扩展卡利普,CPR和基于地面的SNU LIDAR(SNU-L)测量相互补充,可以组合,以提供有关气溶胶和云的垂直分布的完整信息,特别是对于厚的不透明云。来自Lidars的气溶胶灭弧剖面显示出在无云条件下的行星边界层内的气溶胶良好的气溶胶协议,并为夜间卡利普飞行。

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