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Radiative Flux Estimation from a Broadband Radiometer Using Synthetic Angular Models in the EarthCARE Mission Framework. Part II: Evaluation

机译:在EarthCARE任务框架中使用合成角模型从宽带辐射计中估算辐射通量。第二部分:评估

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The instantaneous top-of-atmosphere (TOA) radiance-to-flux conversion for the broadband radiometer (BBR) on board the Earth Clouds, Aerosols, and Radiation Explorer (EarthCARE) was assessed in Part I of this paper, by developing theoretical angular distribution models (ADMs) specifically designed for the instrument viewing configuration. This paper validates the BBR ADMs by comparing derived flux estimates with flux retrievals obtained from the Clouds and the Earth’s Radiant Energy System (CERES) Terra models. A CERES BBR-like database is employed in the assessment, which is an optimum dataset to validate the BBR algorithms and to determine the benefits of the multiangular conversion procedures in the BBR instrument. The validation of theoretical results with empirical data is essential to prepare the conversion algorithms prior to the launch of EarthCARE. This paper demonstrates that the application of a linear combination method is not recommended when outgoing radiances do not follow the response modeled in the radiative transfer calculations. An effective radiance averaged model outperforms all other developed models, in terms of the coefficient of variation of the root-mean-square error, in the validation study of the shortwave (SW) regime (clear sky 1.9%; cloudy 7.1%) while an effective radiance along-track model obtains the best comparisons for the longwave (LW) regime (clear sky 1.4%; cloudy 1.5%). The evaluation of the multiangular models with scenes with high anisotropy shows that multiview flux conversion algorithms can statistically improve CERES ADM results when CERES flux discrepancies of a target are higher than 4 W m2 in the LW domain and SW clear-sky scenes and higher than 20 W m2 in scenes with cloudy conditions.
机译:本文第一部分通过开发理论角度,评估了地球云,气溶胶和辐射探测仪(EarthCARE)上的宽带辐射计(BBR)的瞬时大气顶(TOA)辐射通量转换。专为仪器查看配置而设计的分配模型(ADM)。本文通过将导出的通量估算值与从云和地球辐射能系统(CERES)Terra模型获得的通量检索结果进行比较,来验证BBR ADM。评估中使用了类似CERES BBR的数据库,这是验证BBR算法并确定BBR仪器中多角度转换程序的好处的最佳数据集。用经验数据对理论结果进行验证对于在启动EarthCARE之前准备转换算法至关重要。本文证明,当输出辐射不遵循辐射传递计算中建模的响应时,不建议使用线性组合方法。在短波(SW)方案的验证研究中(晴天1.9%;多云7.1%),有效的平均辐射模型在均方根误差的变异系数方面优于所有其他开发的模型。有效辐射沿航迹模型获得了长波(LW)方案的最佳比较(晴空1.4%;多云1.5%)。对具有高各向异性场景的多角度模型的评估表明,当目标的CERES通量差异在LW域和SW晴朗天空场景中大于4 W m2时,多视图通量转换算法可以从统计学上改善CERES ADM结果。在阴天场景中的W m2。

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