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首页> 外文期刊>Applied optics >Beam attenuation coefficient retrieval by inversion of airborne lidar-induced chromophoric dissolved organic matter fluorescence. I. Theory
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Beam attenuation coefficient retrieval by inversion of airborne lidar-induced chromophoric dissolved organic matter fluorescence. I. Theory

机译:通过对机载激光雷达诱导的发色溶解的有机物荧光进行反演来获取光束衰减系数。一,理论

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摘要

It is shown that the oceanic beam attenuation coefficient can be retrieved from airborne laser-induced and depth-resolved chromophoric dissolved organic matter (CDOM) fluorescence. The radiative transfer equation (RTE) retrieval methodology does not require a laser beam spread function model since two CDOM fluorescence bands are used in conjunction with a beam attenuation spectral model, is self-normalizing since the CDOM absorption coefficient and laser beam irradiance are common to both fluorescence observational channels, and is enabled by the known isotropic phase function for CDOM fluorescence. Although this RTE analytical inversion theory is exact, the retrieval uncertainty is reduced by configuring the proposed lidar in the multiple-field-of-view beam attenuation mode to significantly diminish observation of multiple scattering. The theory can be applied over wide regions of the ocean's continental margins, estuaries, lakes, and rivers that are known to have sufficient CDOM.
机译:结果表明,海洋光束衰减系数可以从机载激光诱导和深度分辨的发色团溶解有机物(CDOM)荧光中获得。辐射传递方程(RTE)检索方法不需要激光束扩散函数模型,因为两个CDOM荧光带与光束衰减光谱模型一起使用,由于CDOM吸收系数和激光束辐照度对于两个荧光观察通道,并通过CDOM荧光的已知各向同性相位功能启用。尽管此RTE分析反演理论是精确的,但通过将建议的激光雷达配置为多视场光束衰减模式以显着减少多重散射的观测,可以降低检索不确定性。该理论可以应用于已知具有足够CDOM的海洋大陆边缘,河口,湖泊和河流的广阔区域。

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  • 来源
    《Applied optics》 |2006年第10期|共8页
  • 作者

    Frank E. Hoge;

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  • 正文语种 eng
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