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Euphotic Holding Capacity for Optically Active Substances
Euphotic layer optically active substances light attenuation
2009/6/10
Euphotic holding capacity is defined as the amount of pure water or a substance that could be
contained in the euphotic layer if it would be the single optically active component in the system. Compa...
Tidal marshes as a source of optically and chemically distinctive colored dissolved organic matter in the Chesapeake Bay
Tidal marshes optically chemically distinctive colored dissolved organic matter the Chesapeake Bay
2014/4/21
The role of tidal marshes as a source of dissolved organic carbon (DOC) and colored dissolved organic matter (CDOM) for adjacent estuarine waters was studied in the Rhode River subestuary of the Chesa...
Effects of microalgal communities on reflectance spectra of carbonate sediments in subtidal optically shallow marine environments
Effects of microalgal communities reflectance spectra carbonate sediments subtidal optically shallow marine environments
2014/5/19
This study was conducted in subtidal areas around Lee Stocking Island, Bahamas, to investigate how microalgal biomass and community structure affect hyperspectral reflectance of sediments. Hyperspectr...
The spectral upwelling radiance distribution in optically shallow waters
spectral upwelling radiance distribution optically shallow waters
2014/5/19
The upwelling radiance distribution in optically shallow water is investigated with experiments and Hydrolight numerical simulations for two different benthic surfaces and a range of solar zenith angl...
Effects of optically shallow bottoms on upwelling radiances: Bidirectional reflectance distribution function effects
optically shallow bottoms upwelling radiances Bidirectional reflectance distribution function effects
2014/5/19
Radiative transfer simulations were carried out for a variety of measured and modeled benthic bidirectional reflectance distribution functions (BRDFs), incident lighting conditions, bottom depths, and...
Effects of optically shallow bottoms on upwelling radiances: Inhomogeneous and sloping bottoms
optically shallow bottoms upwelling radiances Inhomogeneous and sloping bottoms
2014/5/19
If the benthic boundary in optically shallow waters is spatially inhomogeneous or sloping, the underwater light field is inherently three-dimensional (3D). Numerical simulations of 3D underwater radia...