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Polarized infrared reflectivity of 2D sea surfaces with two surface reflections

机译:具有两个表面反射的二维海面的偏振红外反射率

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摘要

Sea surface infrared reflectivity is an important parameter in oceanic remote sensing.Most analyticalmodels consider single surface reflections, and the polarization is usually ignored. However, a loss of energy is reported for large observation angles (θ > 50°) becausemultiple surface reflections are ignored. This article generalizes the infrared reflectivity derivation of Li et al. (Appl. Opt., Vol. 52, 6100–6111, 2013) for 1D surfaces (2D problems) to 2D surfaces (3D problems), so that the cross-polarization effect can be taken into account. The contributions of one and two successive surface reflections are analyzed separately. The bidirectional reflectivity and the hemispherical reflectivity are studied. It is shown that the sea surface infrared reflectivity is significant for large incidence and observation angles. The energy conservation criterion is then checked. The loss of energy is largely reduced after taking into account two surface reflections.
机译:海面红外反射率是海洋遥感中的重要参数。大多数分析模型都考虑到单面反射,而偏振通常被忽略。但是,由于观察到多个表面反射,因此对于大观察角(θ> 50°)会报告能量损失。本文概括了Li等人的红外反射率推导。 (Appl。Opt。,第52卷,6100–6111,2013年)适用于1D表面(2D问题)到2D表面(3D问题),因此可以考虑交叉极化效应。分别分析一次和两次连续表面反射的贡献。研究了双向反射率和半球反射率。结果表明,海面的红外反射率对于大入射角和大观测角都非常重要。然后检查节能标准。考虑到两个表面反射后,能量的损失将大大减少。

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