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基于三个粒径等级的浮游植物吸收模型。

Model of phytoplankton absorption based on three size classes.

作者信息

Brewin Robert J W, Devred Emmanuel, Sathyendranath Shubha, Lavender Samantha J, Hardman-Mountford Nick J

机构信息

School of Marine Science and Engineering, University of Plymouth, Plymouth, UK.

出版信息

Appl Opt. 2011 Aug 1;50(22):4535-49. doi: 10.1364/AO.50.004535.

Abstract

Using the phytoplankton size-class model of Brewin et al. [Ecol. Model.221, 1472 (2010)], the two-population absorption model of Sathyendranath et al. [Int. J. Remote. Sens.22, 249 (2001)] and Devred et al. [J. Geophys. Res.111, C03011 (2006)] is extended to three populations of phytoplankton, namely, picophytoplankton, nanophytoplankton, and microphytoplankton. The new model infers total and size-dependent phytoplankton absorption as a function of the total chlorophyll-a concentration. A main characteristic of the model is that all the parameters that describe it have biological or optical interpretation. The three-population model performs better than the two-population model at retrieving total phytoplankton absorption. Accounting for the contributions of picophytoplankton and nanophytoplankton, rather than the combination of both as in the two-population model, improved significantly the retrieval of phytoplankton absorption at low chlorophyll-a concentrations. Class-dependent specific absorption of phytoplankton derived using the model compares well with previously published models. However, the model presented in this paper provides the specific absorption of three size classes and is applicable to a continuum of chlorophyll-a concentrations. Absorption obtained from remotely sensed chlorophyll-a using our model compares well with in situ absorption measurements.

摘要

利用布鲁因等人[《生态模型》221, 1472 (2010)]的浮游植物粒径分级模型,萨蒂恩德拉纳特等人[《国际遥感学报》22, 249 (2001)]以及德弗雷德等人[《地球物理研究杂志》111, C03011 (2006)]的双种群吸收模型被扩展为包含微微型浮游植物、微型浮游植物和小型浮游植物三个种群的浮游植物模型。新模型将总浮游植物吸收以及与粒径相关的浮游植物吸收推导为总叶绿素a浓度的函数。该模型的一个主要特点是,描述它的所有参数都具有生物学或光学意义。在反演总浮游植物吸收方面,三种群模型比双种群模型表现更好。考虑微微型浮游植物和微型浮游植物的贡献,而不是像双种群模型那样将两者合并,显著改善了低叶绿素a浓度下浮游植物吸收的反演。利用该模型得出的浮游植物粒径分级特定吸收与先前发表的模型相比效果良好。然而本文提出的模型给出了三个粒径等级的特定吸收,并且适用于连续的叶绿素a浓度范围。使用我们的模型从遥感叶绿素a中获得的吸收与现场吸收测量结果相比效果良好。

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