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A vector radiative transfer model of coupled ocean-atmosphere system using matrix-operator method for rough sea-surface

机译:基于矩阵-算子的粗糙海面耦合海洋-大气系统矢量辐射传输模型

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摘要

A vector radiative transfer model termed PCOART has been developed for the coupled ocean-atmosphere system, using the matrix-operator (or adding-doubling) method. which considers the rough sea-surface The theoretical formulations of the solution of the vector radiative transfer equation of the coupled ocean-atmosphere system, and the reflection-transmission matrices and internal radiation sources for rough sea surface are described. The model intercompanson is performed for several radiative transfer problems in the atmosphere and ocean, and the results show that PCOART can exactly predict the radiance fields for both flat and rough sea surface. Also, the polarizing remote sensing data from POLDER is used to test the capacity of PCOART to simulate the polarization radiance at the top-of-atmosphere, which shows that PCOART can perfectly reproduce the linear polarization reflectance measured by POLDER. PCOART can not only simulate the total radiance field in the coupled ocean-atmosphere system with wind-induced rough sea surface but also predict the polarization radiance field both in the atmosphere and in the ocean, which can serve as a good tool for the ocean optics and ocean color remote sensing communities.
机译:已经使用矩阵算子(或加倍)方法为耦合的海洋-大气系统开发了称为PCOART的矢量辐射传输模型。考虑了粗糙海面。描述了耦合的海洋-大气系统的矢量辐射传递方程的解的理论公式,以及粗糙海面的反射-透射矩阵和内部辐射源。模型对讲是针对大气和海洋中的几个辐射传递问题而进行的,结果表明,PCOART可以准确预测平坦和粗糙海面的辐射场。另外,利用POLDER的偏振遥感数据测试了PCOART模拟大气顶部偏振辐射的能力,这表明PCOART可以完美再现POLDER测量的线性偏振反射率。 PCOART不仅可以模拟风致粗糙海面耦合的海洋-大气系统中的总辐射场,而且可以预测大气和海洋中的极化辐射场,这可以作为海洋光学的良好工具和海洋颜色遥感社区。

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