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Retrieval of phytoplankton and colored detrital matter absorption coefficients with remote sensing reflectance in an ultraviolet band

机译:在紫外线波段利用遥感反射率提取浮游植物和有色碎屑物质的吸收系数

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The light absorption of phytoplankton and colored detrital matter (CDM), which includes contribution of gelbstoff and detrital matters, has distinctive yet overlapping features in the ultraviolet (UV) and visible domain. TheCDMabsorption (alpha(dg)) increases exponentially with decreasing wavelength while the absorption coefficient of phytoplankton (alpha(ph)) generally decreases toward the shorter bands for the range of 350-450 nm. It has long been envisioned that including ocean color measurements in the UV range may help the separation of these two components from the remotely sensed ocean color spectrum. An attempt is made in this study to provide an analytical assessment of this expectation. We started with the development of an absorption decomposition model [quasi-analytical algorithm (QAA)-UV], analogous to the QAA, that partitions the total absorption coefficient using information at bands 380 and 440 nm. Compared to the retrieval results relying on the absorption information at 410 and 440 nm of the original QAA, our analyses indicate that QAA-UV can improve the retrieval of aph and adg, although the improvement in accuracy is not significant for values at 440 nm. The performance of the UV-based algorithm is further evaluated with in situ measurements. The limited improvement observed with the field measurements highlights that the separation of adg and aph is highly dependent on the accuracy of the ocean color measurements and the estimated total absorption coefficient. (C) 2015 Optical Society of America
机译:浮游植物和有色碎屑物质(CDM)的光吸收包括gelbstoff和碎屑物质的贡献,在紫外线(UV)和可见光区域具有独特但重叠的特征。 CDM吸收(α(dg))随着波长的减小而呈指数增加,而浮游植物的吸收系数(α(ph))通常在350-450 nm范围内向较短的波段减小。长期以来,已经设想将紫外线范围内的海洋颜色测量值包括在内可以帮助将这两个分量与遥感海洋颜色光谱区分开。本研究试图对这种期望进行分析评估。我们开始开发类似于QAA的吸收分解模型[准分析算法(QAA)-UV],该模型使用380和440 nm波段的信息来划分总吸收系数。与依赖于原始QAA的410和440 nm处的吸收信息的检索结果相比,我们的分析表明QAA-UV可以改善aph和adg的检索,尽管对于440 nm处的值,准确性的提高并不明显。基于UV的算法的性能可通过原位测量进一步评估。野外测量所观察到的有限改进表明,adg和aph的分离高度依赖于海洋颜色测量的准确性和估计的总吸收系数。 (C)2015年美国眼镜学会

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