A bio-optical model suitable for use in forward and inverse coupled atmosphere–ocean radiative transfer models
Author:
Publisher
Elsevier BV
Subject
Spectroscopy,Atomic and Molecular Physics, and Optics,Radiation
Reference34 articles.
1. Ocean color chlorophyll algorithm for SeaWiFS;O’Reilly;J Geophys Res,1998
2. A semianalytic radiance model of ocean color;Gordon;J Geophys Res,1988
3. A chlorophyll-dependent semianalytical reflectance model derived from field measurements of absorption and backscattering coefficients within the Southern Ocean;Reynolds;J Geophys Res,2001
4. Semianalytic moderate-resolution imaging spectrometer algorithms for chlorophyll-a and absorption with bio-optical domains based on nitrate-depletion temperatures;Carder;J Geophys Res,1999
5. Inherent optical property inversion of ocean color spectra and its biogeochemical interpretation, 1, Time series from the Sargasso Sea;Garver;J Geophys Res,1997
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