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Inferring inherent optical properties and water constituent profiles from apparent optical properties

机译:从表观光学特性推断出固有的光学特性和水成分分布

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摘要

The BP09 experiment conducted by the Centre for Maritime Research and Experimentation in the Ligurian Sea in March 2009 provided paired vertical profiles of nadir-viewing radiances Lu(z) and downward irradiances Ed(z) and inherent optical properties (IOPs, absorption, scattering and backscattering coefficients). An inversion algorithm was implemented to retrieve IOPs from apparent optical properties (AOPs, radiance reflectance RL, irradiance reflectance RE and diffuse attenuation coefficient Kd) derived from the radiometric measurements. Then another inversion algorithm was developed to infer vertical profiles of water constituent concentrations, including chlorophyll-a concentration, non-algal particle concentration, and colored dissolved organic matter from the retrieved IOPs based on a bio-optical model. The algorithm was tested on a synthetic dataset and found to give reliable results with an accuracy better than 1%. When the algorithm was applied to the BP09 dataset it was found that good retrievals of IOPs could be obtained for sufficiently deep waters, i.e. for Lu(z) and Ed(z) measurements conducted to depths of 50 m or more. This requirement needs to be satisfied in order to obtain a good estimation of the backscattering coefficient. For such radiometric measurements a correlation of 0.88, 0.96 and 0.93 was found between retrieved and measured absorption, scattering and backscattering coefficients, respectively. A comparison between water constituent values derived from the measured IOPs and in-situ measured values, yielded a correlation of 0.80, 0.78, and 0.73 for chlorophyll-a concentration, non-algal particle concentration, and absorption coefficient of colored dissolved organic matter at 443 nm, respectively. This comparison indicates that adjustments to the bio-optical model are needed in order to obtain a better match between inferred and measured water constituent values in the Ligurian Sea using the methodology developed in this paper.
机译:由利古里亚海海事研究与实验中心于2009年3月进行的BP09实验提供了成对的天底观测辐射Lu(z)和向下辐射Ed(z)的垂直剖面以及固有的光学特性(IOP,吸收,散射和反向散射系数)。实施了反演算法,以从辐射测量得出的表观光学特性(AOP,辐射反射率RL,辐射反射率RE和扩散衰减系数Kd)中检索IOP。然后,根据生物光学模型,开发了另一种反演算法,以从取回的IOP中推断出水成分浓度的垂直剖面,包括叶绿素a浓度,非藻类颗粒浓度和有色溶解有机物。该算法在综合数据集上进行了测试,发现可提供可靠的结果,其准确性优于1%。当将该算法应用于BP09数据集时,发现对于足够深的水,即对于进行到50 m或更大深度的Lu(z)和Ed(z)测量,可以获得良好的IOP取回。为了获得对反向散射系数的良好估计,需要满足该要求。对于这样的辐射测量,测得的吸收系数,散射系数和反向散射系数分别为0.88、0.96和0.93。从测得的IOPs和原位测得的水成分值之间进行比较,得出叶绿素a浓度,非藻类颗粒浓度和有色溶解有机物在443处的吸收系数分别为0.80、0.78和0.73纳米。这种比较表明,需要对生物光学模型进行调整,以使用本文开发的方法在利古里亚海中获得推断的和测得的水成分值之间的更好匹配。

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