Particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters

The semi-empirical algorithm of [1] for the estimation of turbidity (T) from marine reflectance (?w) is calibrated and validated using a large dataset of in situ measurements collected in various waters, for use with any ocean colour hyperspectral sensor, and with Sentinel-2, Landsat 8 and Pléiades...

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Publicado: 2016
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03796566_vSP-740_n_p_Nechad
http://hdl.handle.net/20.500.12110/paper_03796566_vSP-740_n_p_Nechad
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spelling paper:paper_03796566_vSP-740_n_p_Nechad2023-06-08T15:40:39Z Particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters Turbidity Backscattering coefficients Hyperspectral sensors In-situ measurement Marine reflectance Particles sizes Phase functions Semi-empirical Side scattering Backscattering The semi-empirical algorithm of [1] for the estimation of turbidity (T) from marine reflectance (?w) is calibrated and validated using a large dataset of in situ measurements collected in various waters, for use with any ocean colour hyperspectral sensor, and with Sentinel-2, Landsat 8 and Pléiades spectral bands. The relationship between particulate backscattering coefficient (bbp) and side-scattering (T) is investigated through simulation of Fournier-Forand phase functions, assuming variable particles size and composition, and through T and bbp in situ measurements in clear to extremely turbid waters. 2016 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03796566_vSP-740_n_p_Nechad http://hdl.handle.net/20.500.12110/paper_03796566_vSP-740_n_p_Nechad
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Turbidity
Backscattering coefficients
Hyperspectral sensors
In-situ measurement
Marine reflectance
Particles sizes
Phase functions
Semi-empirical
Side scattering
Backscattering
spellingShingle Turbidity
Backscattering coefficients
Hyperspectral sensors
In-situ measurement
Marine reflectance
Particles sizes
Phase functions
Semi-empirical
Side scattering
Backscattering
Particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters
topic_facet Turbidity
Backscattering coefficients
Hyperspectral sensors
In-situ measurement
Marine reflectance
Particles sizes
Phase functions
Semi-empirical
Side scattering
Backscattering
description The semi-empirical algorithm of [1] for the estimation of turbidity (T) from marine reflectance (?w) is calibrated and validated using a large dataset of in situ measurements collected in various waters, for use with any ocean colour hyperspectral sensor, and with Sentinel-2, Landsat 8 and Pléiades spectral bands. The relationship between particulate backscattering coefficient (bbp) and side-scattering (T) is investigated through simulation of Fournier-Forand phase functions, assuming variable particles size and composition, and through T and bbp in situ measurements in clear to extremely turbid waters.
title Particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters
title_short Particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters
title_full Particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters
title_fullStr Particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters
title_full_unstemmed Particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters
title_sort particulate backscattering retrieval from remotely-sensed turbidity in various coastal and riverine turbid waters
publishDate 2016
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03796566_vSP-740_n_p_Nechad
http://hdl.handle.net/20.500.12110/paper_03796566_vSP-740_n_p_Nechad
_version_ 1768546304322961408