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首页> 外文期刊>Applied optics >Estimation of the inherent optical properties of natural waters from the irradiance attenuation coefficient and reflectance in the presence of Raman scattering
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Estimation of the inherent optical properties of natural waters from the irradiance attenuation coefficient and reflectance in the presence of Raman scattering

机译:在存在拉曼散射的情况下,根据辐照衰减系数和反射率估算天然水的固有光学性质

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摘要

By means of radiative transfer simulations we developed a model for estimating the absorption a, the scattering b, and the backscattering b_(b) coefficients in the upper ocean from irradiance reflectance just beneath the sea surface, R(0), and the average attenuation coefficient for downwelling irradiance, _(1), between the surface and the first attenuation depth. The model accounts for Raman scattering by water, and it does not require any assumption about the spectral shapes of a, b, and b_(b). The best estimations are obtained for a and b_(b) in the blue and green spectral regions, where errors of a few percent to <10% are expected over a broad range of chlorophyll concentration in water. The model is useful for satellite ocean color applications because the model input, R(0) and _(1), can be retrieved from remote sensing and the model output, a and b_(b), is the major determinant of remote-sensing reflectance.
机译:通过辐射传输模拟,我们开发了一个模型,用于根据海面下方的辐射反射率R(0)和平均衰减来估计高空中的吸收系数a,散射系数b和反向散射系数b_(b)。在表面和第一衰减深度之间的向下辐射照度系数 _(1)。该模型考虑了水的拉曼散射,并且不需要对a,b和b_(b)的光谱形状进行任何假设。对于蓝色和绿色光谱区域中的a和b_(b)可获得最佳估计,其中在水中广泛的叶绿素浓度范围内,预期误差在百分之几到<10%之间。该模型对于卫星海洋色彩应用很有用,因为可以从遥感中检索模型输入R(0)和 _(1),而模型输出a和b_(b)是遥感反射率的主要决定因素。

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