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首页> 外文期刊>Applied optics >Polarized radiance fields under a dynamic ocean surface: a three-dimensional radiative transfer solution
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Polarized radiance fields under a dynamic ocean surface: a three-dimensional radiative transfer solution

机译:动态海洋表面下的极化辐射场:三维辐射转移解

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摘要

The hybrid matrix operator, Monte Carlo (HMOMC) method previously reported [Appl. Opt. 47, 1063-1071 (2008)] is improved by neglecting higher-order terms in the coupling of the matrix operators and by introducing a dual grid scheme. The computational efficiency for solving the vector radiative transfer equation in a full 3D coupled atmosphere-surface-ocean system is substantially improved, and, thus, large-scale simulations of the radiance distribution become feasible. The improved method is applied to the computation of the polarized radiance field under realistic surface waves simulated by the power spectral density method. To the authors' best knowledge, this is the first time that the polarized radiance field under a dynamic ocean surface and the underwater image of an object above such an ocean surface have been reported.
机译:先前报道的混合矩阵算子,蒙特卡罗(HMOMC)方法[Appl。选择。 47,1063-1071(2008)]通过在矩阵算子的耦合中忽略高阶项并引入双网格方案而得到改进。在完整的3D耦合的大气-表面-海洋系统中求解矢量辐射传递方程的计算效率得到了显着提高,因此,对辐射度分布进行大规模仿真变得可行。将该改进方法应用于功率谱密度法模拟的真实表面波下极化辐射场的计算。据作者所知,这是首次报道动态海洋表面下的极化辐射场和此类海洋表面上物体的水下图像。

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