Mobley Curtis D
Sequoia Scientific, Inc., 2700 Richards Road, Suite 107 Bellevue, Washington 98005, USA.
Opt Express. 2011 Sep 26;19(20):18927-44. doi: 10.1364/OE.19.018927.
Ocean physical-biological-optical ecosystem models can require light calculations at thousands of grid points and time steps. Implicit inverse models that recover ocean absorption and scattering properties from measured light variables can require thousands of solutions of the radiative transfer equation. An extremely fast radiative transfer code, EcoLight-S(ubroutine), has been developed to address these needs. EcoLight-S requires less than one second on a moderately fast computer to compute spectral irradiances over near-ultraviolet to near-infrared wavelengths with errors in the photosyntheically available radiation (PAR) of no more than ten percent throughout the euphotic zone. It is thus possible to replace simple and often inaccurate analytical PAR or spectral irradiance models with more accurate radiative transfer calculations, with very little computational penalty. EcoLight-S is applicable to Case 2 and optically shallow waters for which no analytical light models exist. EcoLight-S also computes upwelling and downwelling plane irradiances, nadir and zenith radiances, and the remote-sensing reflectance. These quantities allow ecosystem predictions to be validated with optical measurements obtained from in-water instruments or remotely sensed imagery.
海洋物理-生物-光学生态系统模型可能需要在数千个网格点和时间步长上进行光照计算。从测量的光变量中恢复海洋吸收和散射特性的隐式反演模型可能需要求解数千次辐射传输方程。为满足这些需求,已开发出一种极快的辐射传输代码EcoLight-S(子程序)。在一台中等速度的计算机上,EcoLight-S计算近紫外到近红外波长范围内的光谱辐照度所需时间不到一秒,在整个真光层内光合有效辐射(PAR)的误差不超过10%。因此,用更精确的辐射传输计算取代简单且往往不准确的解析PAR或光谱辐照度模型成为可能,且计算代价极小。EcoLight-S适用于不存在解析光照模型的二类水体和光学浅水区。EcoLight-S还能计算向上和向下的平面辐照度、天底和天顶辐射率以及遥感反射率。这些量使得生态系统预测能够通过从水中仪器或遥感图像获得的光学测量进行验证。