Estimation of the spectral diffuse attenuation coefficient Kd(λ) from UV to NIR using ocean color images: Application from SeaWiFS to PACE

Cedric jamet, Daniel Jorge Schaeffer,Hubert Loisel

crossref(2023)

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摘要
<p>The fine-scale study of the diffuse attenuation coefficient, K<sub>d</sub>(l), of the spectral solar downward irradiance&#160; is only feasible by ocean color remote sensing. Several empirical and semi-analytical methods exist. However, most of these models are generally applicable for clear open ocean waters. They show limitations when applied to coastal waters. A new empirical method based on neural networks has been developed using a relationship between the remote-sensing reflectances between 443 and 670 nm and K<sub>d</sub>(&#955;). The architecture of the neural network has been defined using synthetical and <em>in situ</em> dataset. The model has been developed for SeaWiFS, MODIS-AQUA, MERIS, VIIRS, OLCI and PACE space-borne sensors. Validation using in-situ measurements from a wide range of type of waters (from oligotrophic to very turbid waters) shows similar retrievals accuracies for low values of K<sub>d</sub>(490)&#160; (i.e. <0.20 m<sup>-1</sup>) and better estimates for greater values of and K<sub>d</sub>(490). The new model is compared to empirical and semi-empirical methods and is suitable for open water but also for turbid waters.</p>
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