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首页> 外文期刊>SOLA: Scientific Online Letters on the Atmosphere >Improvement of Cirrus Cloud-Top Height Estimation Using Geostationary Satellite Split-Window Measurements Trained with CALIPSO Data
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Improvement of Cirrus Cloud-Top Height Estimation Using Geostationary Satellite Split-Window Measurements Trained with CALIPSO Data

机译:利用CALIPSO数据训练的对地静止卫星分裂窗口测量值改进Cirrus云顶高度估计

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We developed a method for the estimation of cloud-top height using only split-window channels of infrared observations from geostationary satellites. Lookup tables (LUTs) were constructed based on regression of them with direct observations of cloud top height from the Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) and Cloud Profiling Radar onboard the CALIPSO and CloudSat satellites, respectively. Our previous estimation scheme using cloud radar underestimated the top heights of cirriform cloud. In this study, using CALIOP data, we succeeded in reducing the underestimation of the height of cirriform clouds. Although CALIOP can detect optically thin clouds around the tropopause, their top heights cannot be estimated well using split-window observations. By defining the altitude at which the optical depth from the top had a specified value τmin (= 0.2) as the cloud-top height, we could create a practical LUT. In the LUT, the underestimation of the heights of cirriform cloud was corrected substantially, while reducing the effect of the low sensitivity of split-window observations to thin tropopause cloud.
机译:我们开发了一种仅使用对地静止卫星红外观测的分割窗口通道估算云顶高度的方法。分别基于CALIPSO和CloudSat卫星上的正交极化(CALIOP)和云剖析雷达直接观测云顶高度的基础上,基于对它们的回归构建了查询表(LUT)。我们之前使用云雷达的估计方案低估了圆弧形云的最高高度。在这项研究中,使用CALIOP数据,我们成功地减少了对环状云高度的低估。尽管CALIOP可以检测到对流层顶周围的光学薄云,但使用分割窗口观测无法很好地估计其最高高度。通过定义从顶部开始的光学深度具有指定值τmin(= 0.2)的高度作为云顶高度,我们可以创建一个实用的LUT。在LUT中,对环状云高度的低估进行了实质性校正,同时减少了分割窗口观测值对稀薄的对流层顶云的低灵敏度影响。

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