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An evaluation of operational GOES-derived single-layer cloud top heights with ARSCL data over the ARM Southern Great Plains Site

机译:通过aRm southern Great plains站点的aRsCL数据评估运行GOEs衍生的单层云顶高度

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摘要

Cloud top heights retrieved from Geostationary Operational Environmental Satellite (GOES) data are evaluated using comparisons to 5 years of surface-based cloud radar and lidar data taken at the Atmospheric Radiation Measurement (ARM) program’s site near Lamont, Oklahoma. Separate daytime and nighttime algorithms developed at NASA Langley Research Center (LaRC) applied to GOES imager data and an operational CO2-slicing technique applied to GOES sounder data are tested. Comparisons between the daytime, nighttime and CO2-slicing cloud top heights and the surface retrievals yield mean differences of -0.84 ± 1.48 km, -0.56 ± 1.31 km, and -1.30 ± 2.30 km, respectively, for all clouds. The errors generally increase with increasing cloud altitude and decreasing optical thickness. These results, which highlight some of the challenges associated with passive satellite cloud height retrievals, are being used to guide development of a blended LaRC/CO2-slicing cloud top height product with accuracies suitable for assimilation into weather forecast models.
机译:从对地静止作战环境卫星(GOES)数据中检索到的云顶高度,通过与俄克拉荷马州拉蒙特市附近的大气辐射测量(ARM)计划站点采集的5年地基云雷达和激光雷达数据的比较进行了评估。测试了由NASA兰利研究中心(LaRC)开发的分别用于GOES成像仪数据的白天和夜晚算法,以及一种应用于GOES探测仪数据的可操作CO2切片技术。对于所有云,白天,夜间和CO2切片云顶高度之间的比较以及地表反演得出的平均差分别为-0.84±1.48 km,-0.56±1.31 km和-1.30±2.30 km。误差通常随着云层高度的增加和光学厚度的减小而增加。这些结果突显了与被动卫星云高度检索相关的一些挑战,这些结果正被用于指导开发LaRC / CO2切片云顶高度混合产品,其精度适合于与天气预报模型结合。

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