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The quasi-analytical algorithm of ocean inherent optical properties using two reference wavelengths

机译:使用两个参考波长的海洋固有光学特性的拟分析算法

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摘要

The total absorption coefficient a(λ) and total backscattering coefficient b_b(λ) are the basic inherent optical properties (IOPs) in ocean color remote sensing, which is the key to connect appearance optical properties (AOPs) from the remote sensor and the concentration of water component. In this paper, based on the stable and strong spectral relationship of the absorption coefficient (excluding the contribution of pure water) and particle backscattering coefficient at 510nm and 555nm, a new quasi-analytical remote sensing IOPs algorithm with two reference wavelengths is developed. The absorption coefficient and particle backscattering coefficient at 510nm and 555nm is calculated firstly through algebraic equations, and then based on the spectral model of particle backscattering coefficient, the a(λ) and b_b,(λ) at the other wavelength are extrapolated. Three optical data sets are used to validate the algorithm, including the in situ data set of China Yellow Sea and East China Sea in the spring of 2003, the synthesis data set and the global in situ data set from IOCCG. Meanwhile, the performance of this new algorithm is also compared with the results of GSM01 and Lee-QAA algorithms with the ECS data set. The results show that, in the coastal area with high influence of terrestrial material, the two reference wavelength algorithm has better flexibility for the special optical water.
机译:总吸收系数a(λ)和总反向散射系数b_b(λ)是海洋遥感中的基本固有光学特性(IOP),这是连接遥感器的外观光学特性(AOP)和浓度的关键。水成分。本文基于510nm和555nm处吸收系数(不包括纯水的贡献)和粒子反向散射系数的稳定和强光谱关系,开发了一种新的具有两个参考波长的准分析遥感IOPs算法。首先通过代数方程计算510nm和555nm处的吸收系数和粒子后向散射系数,然后基于粒子后向散射系数的光谱模型,对另一波长处的a(λ)和b_b,(λ)进行外推。使用三个光学数据集来验证该算法,包括2003年春季的中国黄海和东海原位数据集,综合数据集和IOCCG的全球原位数据集。同时,还将该新算法的性能与带有ECS数据集的GSM01和Lee-QAA算法的结果进行了比较。结果表明,在陆地物质影响较大的沿海地区,两种参考波长算法对特殊光学用水具有较好的灵活性。

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