Advances in the Ocean Color Component of the Aerosol Robotic Network (AERONET-OC)

The Ocean Color Component of the Aerosol Robotic Network(AERONET-OC) supports activities related to ocean color such as validation of satellite data products, assessment of atmospheric correction schemes, and evaluation of bio-optical models through globally distributed standardized measurements of...

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Vydáno v:Journal of atmospheric and oceanic technology Ročník 38; číslo 4; s. 725 - 746
Hlavní autoři: Zibordi, Giuseppe, Holben, Brent N, Talone, Marco, D'Alimonte, David, Slutsker, Ilya, Giles, David M, Sorokin, Mikhail G
Médium: Journal Article
Jazyk:angličtina
Vydáno: Goddard Space Flight Center American Meteorological Society 01.04.2021
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ISSN:0739-0572, 1520-0426
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Abstract The Ocean Color Component of the Aerosol Robotic Network(AERONET-OC) supports activities related to ocean color such as validation of satellite data products, assessment of atmospheric correction schemes, and evaluation of bio-optical models through globally distributed standardized measurements of water-leaving radiance and aerosol optical depth. In view of duly assisting the AERONET-OC data user community, this work (i) summarizes the latest investigations on a number of scientific issues related to above-water radiometry, (ii) emphasizes the network expansion that from 2002 until the end of 2020 integrated 31 effective measurement sites, (iii) shows the equivalence of data product accuracy across sites and time for measurements performed with different instrument series, (iv) illustrates the variety of water types represented by the network sites ensuring validation activities across a diversity of observation conditions, and (v) documents the availability of water-leaving radiance data corrected for bidirectional effects by applying a method specifically developed for chlorophyll-a-dominated waters and an alternative one that is likely suitable for any water type.
AbstractList The Ocean Color Component of the Aerosol Robotic Network(AERONET-OC) supports activities related to ocean color such as validation of satellite data products, assessment of atmospheric correction schemes, and evaluation of bio-optical models through globally distributed standardized measurements of water-leaving radiance and aerosol optical depth. In view of duly assisting the AERONET-OC data user community, this work (i) summarizes the latest investigations on a number of scientific issues related to above-water radiometry, (ii) emphasizes the network expansion that from 2002 until the end of 2020 integrated 31 effective measurement sites, (iii) shows the equivalence of data product accuracy across sites and time for measurements performed with different instrument series, (iv) illustrates the variety of water types represented by the network sites ensuring validation activities across a diversity of observation conditions, and (v) documents the availability of water-leaving radiance data corrected for bidirectional effects by applying a method specifically developed for chlorophyll-a-dominated waters and an alternative one that is likely suitable for any water type.
The Ocean Color Component of the Aerosol Robotic Network (AERONET-OC) supports activities related to ocean color such as validation of satellite data products, assessment of atmospheric correction schemes, and evaluation of bio-optical models through globally distributed standardized measurements of water-leaving radiance and aerosol optical depth. In view of duly assisting the AERONET-OC data user community, this work (i) summarizes the latest investigations on a number of scientific issues related to above-water radiometry, (ii) emphasizes the network expansion that from 2002 until the end of 2020 integrated 31 effective measurement sites, (iii) shows the equivalence of data product accuracy across sites and time for measurements performed with different instrument series, (iv) illustrates the variety of water types represented by the network sites ensuring validation activities across a diversity of observation conditions, and (v) documents the availability of water-leaving radiance data corrected for bidirectional effects by applying a method specifically developed for chlorophyll- a -dominated waters and an alternative one that is likely suitable for any water type.
Audience PUBLIC
Author D'Alimonte, David
Giles, David M
Zibordi, Giuseppe
Talone, Marco
Slutsker, Ilya
Sorokin, Mikhail G
Holben, Brent N
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  fullname: Sorokin, Mikhail G
  organization: Science Systems and Applications (United States)
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Snippet The Ocean Color Component of the Aerosol Robotic Network(AERONET-OC) supports activities related to ocean color such as validation of satellite data products,...
The Ocean Color Component of the Aerosol Robotic Network (AERONET-OC) supports activities related to ocean color such as validation of satellite data products,...
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SubjectTerms Aerosol optical depth
Aerosol Robotic Network
Aerosols
Atmospheric correction
Atmospheric models
Calibration
Chlorophyll
Chlorophyll a
Color
Data
Data processing
Earth Resources And Remote Sensing
Infrastructure
Ocean color
Ocean colour
Oceans
Optical analysis
Optical properties
Optical thickness
Radiance
Radiometers
Radiometry
Satellite data
Sensors
Water
Water availability
Water depth
Water types
Title Advances in the Ocean Color Component of the Aerosol Robotic Network (AERONET-OC)
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