Plass G N, Kattawar G W
Appl Opt. 1972 Jul 1;11(7):1598-604. doi: 10.1364/AO.11.001598.
The reflected and transmitted radiance is calculated for a realistic model of the atmosphere-ocean system. Multiple scattering to all orders as well as anisotropic scattering from aerosols are taken into account by a Monte Carlo technique. The probability for reflection or refraction at the ocean surface is calculated for each photon. Scattering and absorption by water molecules (Rayleigh) and by hydrosols (Mie) are taken into account within the ocean. The radiance is calculated for a normal aerosol distribution as well as for a three and ten times normal distribution. Calculations are also made for an aerosol layer near the earth as well as for one in the stratosphere. The upward radiance at the top of the atmosphere depends strongly on the total number of aerosols but not on their spatial distribution. Variations in the ozone amount also have little effect on the upward radiance. The calculations are made at the following wavelengths: 0.7 micro, 0.9 micro, 1.67 micro. The radiance above and below the ocean surface as well as the flux at various levels are also discussed.
针对大气 - 海洋系统的实际模型计算反射和透射辐射率。通过蒙特卡罗技术考虑所有阶次的多次散射以及气溶胶的各向异性散射。为每个光子计算在海洋表面反射或折射的概率。考虑了海洋中水分子(瑞利散射)和水溶胶(米氏散射)的散射和吸收。针对正常气溶胶分布以及三倍和十倍正常分布计算辐射率。还针对靠近地球的气溶胶层以及平流层中的气溶胶层进行了计算。大气顶部的向上辐射率强烈依赖于气溶胶的总数,但不依赖于它们的空间分布。臭氧量的变化对向上辐射率的影响也很小。计算在以下波长下进行:0.7微米、0.9微米、1.67微米。还讨论了海洋表面上方和下方的辐射率以及不同高度处的通量。