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首页> 外文期刊>Applied optics >Comparison of the University of California at Los Angeles Line-by-Line Equivalent Radiative Transfer Model and the Moderate-Resolution Transmission Model for accuracy assessment of the National Polar-Orbiting Operational
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Comparison of the University of California at Los Angeles Line-by-Line Equivalent Radiative Transfer Model and the Moderate-Resolution Transmission Model for accuracy assessment of the National Polar-Orbiting Operational

机译:加州大学洛杉矶分校等效线辐射传输模型与中分辨率传输模型在国家极地轨道运行精度评估中的比较

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摘要

To support the verification and implementation of the National Polar-Orbiting Operational Environmental Satellite System's Visible-Infrared Imaging-Radiometric Suite (VIIRS) algorithms used for inferring cloud environmental data records, an intercomparison effort has been carried out to assess the consistency between the simulated cloudy radiances-reflectances from the University of California at Los Angeles Line-by-Line Equivalent Radiative Transfer Model and those from the Moderate-Resolution Transmission Model (MODTRAN) with the 16 stream Discrete Ordinate Radiative Transfer Model (DISORT) incorporated. For typical ice and water cloud optical depths and particle sizes, we found discrepancies in the visible and near-infrared reflectances from the two models, which presumably are due to the difference in phase function (nonspherical versus Henyey-Greenstein), different numbers of phase function expansion terms (16 versus 200 terms), and different treatment of forward peak truncation in each model. Using the MODTRAN4, we also found substantial differences in the infrared radiances for optically thick clouds. These differences led to the discovery by MODTRAN4 developers of an inconsistency in the MODTRAN4-DISORT interface. MODTRAN4 developers corrected the inconsistency, which provided dramatic reductions in the differences between the two radiative transfer models. The comparison not only affects the prospective test plan for the VIIRS cloud algorithms but also should lead to improvements in future MODTRAN releases.
机译:为了支持国家极地轨道运行环境卫星系统的用于推断云环境数据记录的可见-红外成像-辐射套件(VIIRS)算法的验证和实施,已进行了比对工作,以评估模拟阴天之间的一致性。来自加利福尼亚大学洛杉矶分校的逐行等效辐射传输模型的辐射反射率,以及包含16流离散常规辐射传输模型(DISORT)的中分辨率传输模型(MODTRAN)的辐射率反射。对于典型的冰云和水云的光学深度和粒径,我们发现两个模型的可见光和近红外反射率存在差异,这可能是由于相位函数(非球形与Henyey-Greenstein)不同,相数不同而引起的。函数扩展项(16个对200个项),以及每个模型中对正向峰截断的不同处理。使用MODTRAN4,我们还发现了光学厚云的红外辐射存在很大差异。这些差异导致MODTRAN4开发人员发现MODTRAN4-DISORT接口不一致。 MODTRAN4开发人员更正了不一致之处,这极大地减少了两种辐射传输模型之间的差异。这种比较不仅会影响VIIRS云算法的预期测试计划,而且还将导致未来MODTRAN版本的改进。

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