Gordon H R, Brown O B
Appl Opt. 1973 Jul 1;12(7):1549-51. doi: 10.1364/AO.12.001549.
The radiative transfer equation has been solved by a Monte Carlo technique for a flat homogeneous ocean with two different incident radiance distributions. The irradiance reflectivity R for photons that penetrate the ocean is presented as a function of the single scattering albedo omega(0), and the scattering phase function P(theta) of the medium. The P(theta)'s used are based on experimental observations. The results clearly show that R depends strongly on both omega(0) and P(theta) but apparently not on the form of the incident radiance distribution. Arguments are presented to show that in clearest ocean water the upwelling field above the surface can provide information only about the upper 25 m of the medium.
利用蒙特卡罗技术求解了辐射传输方程,该方程针对具有两种不同入射辐射分布的平坦均匀海洋。穿透海洋的光子的辐照度反射率R表示为单次散射反照率ω(0)和介质的散射相函数P(θ)的函数。所使用的P(θ)基于实验观测。结果清楚地表明,R强烈依赖于ω(0)和P(θ),但显然不依赖于入射辐射分布的形式。文中给出的论据表明,在最清澈的海水中,海面上方的上行场仅能提供有关介质上部25米的信息。