...
首页> 外文期刊>Applied optics >Effect of suspended particulate-size distribution on the backscattering ratio in the remote sensing of seawater
【24h】

Effect of suspended particulate-size distribution on the backscattering ratio in the remote sensing of seawater

机译:悬浮颗粒尺寸分布对海水遥感中反向散射比的影响

获取原文
获取原文并翻译 | 示例

摘要

Mie theory is used to study the influence of the particle-size distribution (PSD) on the backscattering ratio for case 1 and 2 waters. Several in situ measured PSDs from coastal water and the open ocean, representing typical case 2 and 1 waters, were used in this investigation. Calculation of the backscattering ratio requires integration of the PSD over a much broader size range than is usually measured. Consequently extrapolation from fitted data is necessary. To that purpose the measured data are fitted with hyperbolic (Junge) and the two-component model of the PSD. It is shown that the result of extrapolation, hence the backscattering ratio, critically depends on the chosen PSD model. For a particular PSD model the role of submicrometer particles and the applied integration limits on the backscattering ratio is discussed. The use of the hyperbolic PSD model largely overestimates the number of small (submicrometer) particles that significantly contribute to backscattering and consequently leads to an erroneously high backscattering ratio. The two-component model proves to be an adequate PSD model for use in backscattering/scattering calculations providing satisfactory results complying with experimental data. The results are relevant for the inversion of remotely sensed data and the prediction of optical properties and the concentration of phytoplankton pigments, suspended sediment, and yellow substance.
机译:米氏理论用于研究案例1和案例2的水的粒径分布(PSD)对反向散射率的影响。在这项调查中,使用了来自沿海水域和开阔海域的几个原位测量的PSD,代表典型的2类和1类水域。反向散射比的计算要求在比通常测量的范围大得多的尺寸范围内对PSD进行积分。因此,必须根据拟合数据进行推断。为此,将测量数据与双曲线(Junge)和PSD的二元模型拟合。结果表明,外推的结果,即后向散射比,主要取决于所选择的PSD模型。对于特定的PSD模型,讨论了亚微米颗粒的作用以及对反向散射率的应用积分极限。双曲线PSD模型的使用大大高估了小颗粒(亚微米)的数量,这些颗粒显着地有助于反向散射,并因此导致错误的高反向散射比。事实证明,两成分模型是用于反向散射/散射计算的适当PSD模型,可提供符合实验数据的令人满意的结果。这些结果与遥感数据的反演,光学性质的预测以及浮游植物色素,悬浮沉积物和黄色物质的浓度有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号