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- W2012249166 abstract "An analysis of the radiative transfer equation is presented which is applicable for the case of angle-independent, exponentially decreasing irradiance. The results indicate that for reflectance ratios less than 10%, the extinction coefficient of downwelling irradiance is due to particle absorption and the fraction of particle scattering that is not directly forward scattered. The equations for extinction coefficient and reflectance ratio are compared to numerical solutions and other approximations. Solar angle dependence is derived from the quasi-single scattering approximation. Application of these equations to a large data set from the San Francisco Bay Estuary yields estimates of the optical properties of the particles as functions of the concentration of non-volatile suspended solids, algal chlorophyll and suspended detritus. The predictive value of the regression equations are tested using an independent data set. The methods developed appear to be well suited for the development of relationships between optical properties and particle characteristics and concentrations." @default.
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- W2012249166 date "1978-01-01" @default.
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- W2012249166 title "Optics of turbid estuarine waters: Approximations and applications" @default.
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- W2012249166 doi "https://doi.org/10.1016/0043-1354(78)90051-9" @default.
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