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首页> 外文期刊>Applied optics >Impulse response solution to the three-dimensional vector radiative transfer equation in atmosphere-ocean systems. II. The hybrid matrix operator-Monte Carlo method
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Impulse response solution to the three-dimensional vector radiative transfer equation in atmosphere-ocean systems. II. The hybrid matrix operator-Monte Carlo method

机译:大气-海洋系统中三维矢量辐射传递方程的脉冲响应解。二。混合矩阵算子-蒙特卡罗方法

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摘要

A hybrid method is developed to solve the vector radiative transfer equation (VRTE) in a threedimensional atmosphere-ocean system (AOS). The system is divided into three parts: the atmosphere, the dielectric interface, and the ocean. The Monte Carlo method is employed to calculate the impulse response functions (Green functions) for the atmosphere and ocean. The impulse response function of the dielectric interface is calculated by the Fresnel formulas. The matrix operator method is then used to couple these impulse response functions to obtain the vector radiation field for the AOS. The primary advantage of this hybrid method is that it solves the VRTE efficiently in an AOS with different dielectric interfaces while keeping the same atmospheric and oceanic conditions. For the first time, we present the downward radiance field in an ocean with a sinusoidal ocean wave. (c) 2008 Optical Society of America.
机译:开发了一种混合方法来求解三维大气-海洋系统(AOS)中的矢量辐射传递方程(VRTE)。该系统分为三部分:大气,介电界面和海洋。蒙特卡罗方法用于计算大气和海洋的脉冲响应函数(格林函数)。介电界面的脉冲响应函数由菲涅耳公式计算。然后使用矩阵算子方法耦合这些脉冲响应函数以获得AOS的矢量辐射场。这种混合方法的主要优点是,它可以在具有相同介电界面的AOS中有效解决VRTE,同时保持相同的大气和海洋条件。第一次,我们以正弦波形式呈现海洋中的向下辐射场。 (c)2008年美国眼镜学会。

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