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Apparent optical properties of oceanic water: dependence on the molecular scattering contribution

机译:海水的表观光学特性:取决于分子散射贡献

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摘要

The relationships between the apparent optical properties (AOP's) and the inherent optical properties (IOP's) of oceanic water bodies have been reinvestigated by solution of the radiative transfer equation. This reexamination deals specifically with oceanic case 1 waters (those for which phytoplankton and their associated particles or substances control their inherent optical properties). In such waters, when the chlorophyll content is low enough tin most of the entire ocean), the influence of molecular scattering by water molecules is not negligible, leading to a gradual change in the shape of the phase function. The effect of this change on the AOP's is analyzed. The effect of the existence of diffuse sky radiation in addition to the direct solar radiation on AOP-IOP relationships is also examined. Practical parameterizations are proposed to predict in case 1 waters, and at various depths, the vertical attenuation coefficient for downward irradiance (K-d) as a function of the IOP's and solar angle. These parameterizations are valid for the spectral domain where inelastic scattering does not significantly occur (wavelengths below 590 nm). (C) 1998 Optical Society of America. [References: 27]
机译:海洋水体的表观光学特性(AOP)和固有光学特性(IOP)之间的关系已经通过辐射传递方程的解进行了重新研究。这项重新审查特别针对海洋案例1的水(浮游植物及其相关颗粒或物质控制其固有光学特性的那些水)。在这种水域中,当整个海洋的大部分区域中的叶绿素含量足够低时,水分子的分子散射影响不可忽略,导致相函数形状的逐渐变化。分析了此更改对AOP的影响。除了直接太阳辐射外,还研究了漫天辐射的存在对AOP-IOP关系的影响。提出了实用的参数化方法,以预测情况1的水域和各种深度下作为IOP和太阳角的函数的向下辐照度(K-d)的垂直衰减系数。这些参数化对于不显着发生非弹性散射(低于590 nm的波长)的光谱域有效。 (C)1998年美国眼镜学会。 [参考:27]

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