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Re-parameterization of a quasi-analytical algorithm for colored dissolved organic matter dominant inland waters

机译:有色溶解有机物占优势的内陆水域的拟分析算法的重新参数化

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Quasi-Analytical Algorithms (QAAs) are based on radiative transfer equations and have been used to derive inherent optical properties (IOPs) from the above surface remote sensing reflectance (R-rs) in aquatic systems in which phytoplankton is the dominant optically active constituents (OACs). However, Colored Dissolved Organic Matter (CDOM) and Non Algal Particles (NAP) can also be dominant OACs in water bodies and till now a QAA has not been parametrized for these aquatic systems. In this study, we compared the performance of three widely used QAAs in two CDOM dominated aquatic systems which were unsuccessful in retrieving the spectral shape of IOPS and produced minimum errors of 350% for the total absorption coefficient (a), 39% for colored dissolved matter absorption coefficient (a(CDM)) and 7566.33% for phytoplankton absorption coefficient (a(phy)). We re-parameterized a QAA for CDOM dominated (hereafter QAA(CDOM)) waters which was able to not only achieve the spectral shape of the OACs absorption coefficients but also brought the error magnitude to a reasonable level. The average errors found for the 400-750nm range were 30.71 and 14.51 for a, 14.89 and 8.95 for a(CDM) and 25.90 and 29.76 for a(phy) in Funil and Itumbiara Reservoirs, Brazil respectively. Although QAA(CDOM) showed significant promise for retrieving IOPs in CDOM dominated waters, results indicated further tuning is needed in the estimation of a(lambda) and a(phy)(lambda). Successful retrieval of the absorption coefficients by QAA(CDOM) would be very useful in monitoring the spatio-temporal variability of IOPS in CDOM dominated waters. (C) 2016 Elsevier B.V. All rights reserved.
机译:准分析算法(QAA)基于辐射传递方程,已被用于从以上浮游植物为主要光学活性成分的水生系统中的表面遥感反射率(R-rs)得出固有光学特性(IOP)( OAC)。但是,有色溶解有机物(CDOM)和非藻类颗粒(NAP)也是水体中的主要OAC,迄今为止,尚未为这些水生系统设置QAA参数。在这项研究中,我们比较了在两个以CDOM为主的水生系统中三种广泛使用的QAA的性能,这些系统无法获取IOPS的光谱形状,并且产生的总吸收系数(a)的最小误差为350%,有色溶解的误差为39%物质吸收系数(a(CDM))和浮游植物吸收系数(a(phy))的7566.33%。我们对CDOM为主的水(以下称QAA(CDOM))水重新设置了QAA,这不仅可以实现OAC吸收系数的频谱形状,而且还可以将误差幅度提高到合理的水平。在巴西的Funil和Itumbiara水库中,对于400-750nm范围,a的平均误差分别为30.71和14.51,a(CDM)的分别为14.89和8.95,a(phy)的分别为25.90和29.76。尽管QAA(CDOM)显示出在以CDOM为主的水中检索IOP的巨大希望,但结果表明,在估计α和phyλ时需要进一步调整。通过QAA(CDOM)成功获取吸收系数对于监测CDOM主导水域中IOPS的时空变化非常有用。 (C)2016 Elsevier B.V.保留所有权利。

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