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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Cloud occurrences and cloud radiative effects (CREs) from CERES-CALIPSO-CloudSat-MODIS (CCCM) and CloudSat radar-lidar (RL) products
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Cloud occurrences and cloud radiative effects (CREs) from CERES-CALIPSO-CloudSat-MODIS (CCCM) and CloudSat radar-lidar (RL) products

机译:来自Ceres-Calipso-Cloudsat-Modis(CCCM)和Cloudsat Radar-Lidar(RL)产品的云出现和云辐射效果(CRES)

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Two kinds of cloud products obtained from Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation (CALIPSO), CloudSat, and Moderate Resolution Imaging Spectroradiometer (MODIS) are compared and analyzed in this study: Clouds and the Earth's Radiant Energy System (CERES)-CALIPSOCloudSat- MODIS (CCCM) product and CloudSat radar-lidar products such as GEOPROF-LIDAR and FLXHR-LIDAR. Compared to GEOPROF-LIDAR, low-level (<1 km) cloud occurrences in CCCM are larger over tropical oceans because the CCCM algorithm uses a more relaxed threshold of cloud-aerosol discrimination score for CALIPSO Vertical Feature Mask product. In contrast, midlevel (1-8 km) cloud occurrences in GEOPROF-LIDAR are larger than CCCM at high latitudes (>40°). The difference occurs when hydrometeors are detected by CALIPSO lidar but are undetected by CloudSat radar. In the comparison of cloud radiative effects (CREs), global mean differences between CCCM and FLXHR-LIDAR are mostly smaller than 5 W m~(-2), while noticeable regional differences are found. For example, CCCM shortwave (SW) and longwave (LW) CREs are larger than FXLHR-LIDAR along the west coasts of Africa and America because the GEOPROF-LIDAR algorithm misses shallow marine boundary layer clouds. In addition, FLXHR-LIDAR SW CREs are larger than the CCCM counterpart over tropical oceans away from the west coasts of America. Over midlatitude storm-track regions, CCCM SW and LW CREs are larger than the FLXHR-LIDAR counterpart.
机译:从云 - 气溶胶激光乐杆和红外探测卫星观察(CALIPSO),Cloudsat和中度分辨率成像分光镜(MODIS)中获得的两种云产品进行了比较和分析:云和地球辐射能量系统(CERES)-Calipsocloudsat - MODIS(CCCM)产品和Cloudsat Radar-Lidar产品,如Geoprof-Lidar和Flxhr-Lidar。与Geoprof-ridar相比,CCCM中的低水平(<1公里)在热带海洋中发生较大,因为CCCM算法使用更轻松的云气溶胶辨别评分阈值,用于Calipso垂直特征掩模产品。相比之下,Geoprof-LiDar的Midlevel(1-8 km)云发生于高纬度(> 40°)的CCCM大。当CALIPSO LIDAR检测到液体仪但被Cloudsat雷达未被检测到时,会发生差异。在云辐射效应(CRES)的比较中,CCCM和FLXHR-LIDAR之间的全局平均差异大多小于5 W m〜(-2),而发现明显的区域差异。例如,CCCM Shortwave(SW)和龙波(LW)CRES沿着非洲西部海岸和美国的FXLHR-LIDAR大于FXLHR-LIDAR,因为Geoprof-LiDar算法未命中浅海洋边界层云。此外,FLXHR-LIDAR SW CRES大于来自美国西海岸的热带海洋的CCCM对应。在中度风暴轨道区域,CCCM SW和LW CRES大于FLXHR-LIDAR对应物。

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