Semi-analytical algorithm for estimating particulate absorption coefficient in inland water based on OLCI images

衰减系数 光学 微粒 吸收(声学) 有色溶解有机物 环境科学 物理 遥感 材料科学 地质学 化学 营养物 有机化学 浮游植物
作者
Yiling Zheng,Wenyu Liu,Fangfang Chen,Yiwei Zhu,Jie Lin,Heng Lyu,Yunmei Li,Hui Liu,Hongpu Guo,Miao Song
出处
期刊:Optics Express [Optica Publishing Group]
卷期号:33 (19): 40208-40208
标识
DOI:10.1364/oe.570570
摘要

The absorption coefficient of particulate matter ( a p ) is a crucial inherent optical property of water, significantly influencing the underwater light environment. In this study, a semi-analytical model incorporating three spectral bands from Sentinel-3 OLCI imagery was proposed for retrieving a p (674) in turbid inland waters. It eliminates irrelevant factors in the bio-optical model by inputting remote sensing reflectance at 674, 709, and 779 nm, and uses R rs (674)/[ R rs (560)+ R rs (709)] as the optical indicator for estimating the coefficient 1-1/k , where k represents the ratio between a p (674) and a p (709). The estimation accuracy of the algorithm was extensively assessed by using datasets from 13 lakes in China and six lakes in Belgium. The results demonstrated that the proposed algorithm has excellent estimation performance in turbid water. Compared to the QAA-750E algorithm, the median absolute percentage error (MdAPD) decreased from 50.17% to 17.68%, the unbiased mean absolute percentage error (UMAPD) dropped from 44.09% to 21.82%, and the root mean square error (RMSD) improved from 0.61 m -1 to 0.24 m -1 . The algorithm was successfully applied to map a p (674) of lakes in the Eastern Plains from 2016 to 2023 using OLCI images, and the spatial and temporal trends in a p (674) were briefly analyzed. This developed algorithm demonstrates strong potential for long-term a p (674) monitoring in inland waters worldwide.
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