Bio‐optical properties of oceanic waters: A reappraisal

海洋色 辐射传输 辐照度 环境科学 衰减 吸收(声学) 大气辐射传输码 大气校正 波长 衰减系数 大气科学 卫星 遥感 光学 地质学 物理 反射率 天文
作者
André Morel,Stéphane Maritorena
出处
期刊:Journal of Geophysical Research [American Geophysical Union]
卷期号:106 (C4): 7163-7180 被引量:1135
标识
DOI:10.1029/2000jc000319
摘要

The apparent optical properties (AOPs) of oceanic case 1 waters were previously analyzed [ Morel , 1988] and statistically related to the chlorophyll concentration ([Chl]) used as a global index describing the trophic conditions of water bodies. From these empirical relationships a bio‐optical model of the upper layer was developed. With objectives and structure similar to those of the previous study the present reappraisal utilizes AOPs determined during recent Joint Global Ocean Flux Study cruises, namely, spectral attenuation for downward irradiance K d (λ) and irradiance reflectance R (λ). This revision also benefits from improved knowledge of inherent optical properties (IOPs), namely, pure water absorption coefficients and particle scattering and absorption coefficients, and from better pigment quantification (via a systematic use of high‐performance liquid chromatography). Nonlinear trends, already observed between optical properties and algal biomass, are fully confirmed, yet with numerical differences. The previous K d (λ) model, and subsequently the R (λ) model, is modified to account for these new relationships. The R (λ) values predicted as a function of [Chl] and the predicted ratios of reflectances at two wavelengths, which are commonly used in ocean color algorithms, compare well with field values (not used when developing the reflectance model). This good agreement means that semianalytical ocean color algorithms can be successfully applied to satellite data. Going further into purely analytical approaches, ideally based on radiative transfer computations combined with a suite of relationships between the IOPs and [Chl], remains presently problematic, especially because of the insufficient knowledge of the phase function and backscattering efficiency of oceanic particles.
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