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Analytic model for the direct and diffuse components of downwelling spectral irradiance in water

机译:水中下流光谱辐照度的直接分量和扩散分量的解析模型

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摘要

The direct and diffuse components of downwelling irradiance have in general different path lengths in water, and hence they decrease differently with sensor depth. Furthermore, the ever-changing geometry of a wind-roughened and wave-modulated water surface induces uncorrelated intensity changes to these components. To cope with both effects, an analytic model of the downwelling irradiance in water was developed that calculates the direct and diffuse components separately. By assigning weights f_(dd) and f_(ds) to the intensities of the two components, measurements performed at arbitrary surface conditions can be analyzed by treating f_(dd) and f_(ds) as fit parameters. The model was validated against HydroLight and implemented into the public-domain software WASI. It was applied to data from three German lakes to determine the statistics of f_(dd) and f_(ds), to derive the sensor depth of each measurement and to estimate the concentrations of water constituents.
机译:下降流辐照度的直接分量和扩散分量在水中通常具有不同的路径长度,因此它们随传感器深度的不同而减小。此外,经风粗糙处理和波调制的水表面的几何形状不断变化,导致这些组件的强度变化不相关。为了应对这两种影响,开发了水中下流辐照度的解析模型,该模型分别计算了直接分量和扩散分量。通过为两个分量的强度分配权重f_(dd)和f_(ds),可以通过将f_(dd)和f_(ds)作为拟合参数来分析在任意表面条件下执行的测量。该模型已针对HydroLight进行了验证,并已实现到公共领域的软件WASI中。将其应用于来自三个德国湖泊的数据,以确定f_(dd)和f_(ds)的统计数据,以得出每次测量的传感器深度并估算水成分的浓度。

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  • 来源
    《Applied optics》 |2012年第9期|共13页
  • 作者

    Peter Gege;

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