Wang Shenglei, Lee Zhongping, Shang Shaoling, Li Junsheng, Zhang Bing, Lin Gong
Opt Express. 2019 Mar 4;27(5):7642-7655. doi: 10.1364/OE.27.007642.
Secchi disk depth (ZSD) and Forel-Ule index (FUI) are the two oldest and easiest measurements of water optical properties based on visual determination. With an overarching objective to obtain water inherent optical properties (IOPs) using these historical measurements, this study presents a model for associating remote-sensing reflectance (Rrs) with FUI and ZSD. Based upon this, a scheme (FZ2ab) for converting FUI and ZSD to absorption (a) and backscattering coefficients (bb) is developed and evaluated. For a data set from HydroLight simulations, the difference is <11% between FZ2ab-derived a and known a, and <28% between FZ2ab-derived bb and known bb. Further, for a data set from field measurements, the difference is < 30% between FZ2ab-derived a and measured a. These results indicate that FZ2ab can bridge the gap between historical measurements and the focus of IOP measurements in modern marine optics, and potentially extend our knowledge on the bio-optical properties of global seas to the past century through the historical measurements of FUI and ZSD.
塞氏盘深度(ZSD)和福尔-乌勒指数(FUI)是基于视觉判定的两种最古老且最简单的水体光学性质测量方法。本研究的总体目标是利用这些历史测量数据获取水体固有光学性质(IOPs),为此提出了一种将遥感反射率(Rrs)与FUI和ZSD相关联的模型。在此基础上,开发并评估了一种将FUI和ZSD转换为吸收系数(a)和后向散射系数(bb)的方案(FZ2ab)。对于来自HydroLight模拟的数据集,FZ2ab推导得到的a与已知a之间的差异小于11%,FZ2ab推导得到的bb与已知bb之间的差异小于28%。此外,对于来自实地测量的数据集,FZ2ab推导得到的a与测量得到的a之间的差异小于30%。这些结果表明,FZ2ab能够弥合历史测量与现代海洋光学中IOP测量重点之间的差距,并有可能通过FUI和ZSD的历史测量将我们对全球海洋生物光学性质的认识扩展到过去一个世纪。