Journal of Geophysical Research Atmospheres · 1991 · 106 citations · 33 references
EngineeringPhotobiologyPolar EnvironmentsMarine ChemistryOceanographyAntarctic Sea IceEarth ScienceRadiative TransferPhotosynthesisOceanic SystemsIce-water SystemBiogeochemistrySea IceCryosphereRadiometryVisible Light AttenuationArctic OceanographyClimate DynamicsIce-structure InteractionMarine Biology
Biogenic particulate material in sea ice can substantially influence the spectral irradiance within the ice sheet and underlying seawater. In order to simulate accurately seasonal changes in light conditions in situ, the biomass changes of the sea ice microbial community must be considered. Here we attempt to provide an improved description of the optical regime within sea ice by combining information provided by models of radiative transfer in sea ice and snow and models of solar spectral irradiance with formulations describing the attenuation of spectral irradiance by particulates observed in sea ice in McMurdo Sound, Antarctica. Emphasis has been placed on the role of biogenic particles in visible light attenuation with the intent of developing a bio‐optical model that more rigorously describes their influence on radiative transfer processes as they occur in nature. Model results simulating seasonal changes in both photosynthetically active radiation and its spectral distribution agree well with measured under‐ice spectral irradiance. Results reveal how changes in microalgal concentrations, as well as their photophysiological characteristics influence both the quantity and quality of downwelled light in sea ice and in the upper layers of the ice‐covered oceans.
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The thickness distribution of sea ice
A. S. Thorndike, D. A. Rothrock, Gary A. Maykut et al. · Journal of Geophysical Research Atmospheres · 1975 · 835 citations
The Optical Properties of Ice and Snow in the Arctic Basin
Thomas C. Grenfell, Gary A. Maykut · Journal of Glaciology · 1977 · 556 citations · Full text
Arctic Basin, Glacier, Engineering +22
Light and photosynthesis in aquatic ecosystems
J. M. A. Brown · Aquatic Botany · 1984 · 556 citations