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Characterization of the Fluorescence Peak on Remote Sensing Reflectance For Different Conditions of Lakegarda

机译:Lakegarda不同条件下荧光反射峰在遥感反射率上的表征

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The presence of phytoplankton in the oceans and freshwaters basins provides relevant ecological indications about water quality. Its abundance influences the interaction between the solar light and the water body, which in turn can be detected by remote sensing techniques. The water leaving light field contains information about all the processes that occur in the water body itself, including the complex interactions with phytoplankton. While elastic scattering is mostly ascribed to the phytoplankton surface, the absorption and fluorescence processes occur at the chlorophyll-a molecules level. Thus, measurements of the fluorescence signal emitted represents a suitable proxy to identify phytoplankton abundance in inland waters. In this context, the aim of this work is to establish and quantify how the fluorescence signal affects the Remote Sensing Reflectance (Rrs). For this purpose, radiative transfer simulations computed by Hydrolight code were generated for various levels of chlorophyll content, fluorescence quantum yield and optical properties, typical of a clear blue lake (Lake Garda, Italy). This work would form the basis for better exploiting satellite observations from upcoming hyperspectral missions (FLEX, PRISMA, Sentinel-10, HyspIRI).
机译:海洋和淡水盆地中浮游植物的存在为水质提供了相关的生态学指示。它的丰度影响太阳光和水体之间的相互作用,而相互作用又可以通过遥感技术检测出来。离开水的光场包含有关水体本身发生的所有过程的信息,包括与浮游植物的复杂相互作用。尽管弹性散射主要归因于浮游植物表面,但吸收和荧光过程发生在叶绿素-a分子水平。因此,对发出的荧光信号的测量代表了识别内陆水域浮游植物丰度的合适指标。在这种情况下,这项工作的目的是建立和量化荧光信号如何影响遥感反射率(Rrs)。为此,针对不同水平的叶绿素含量,荧光量子产率和光学性质,生成了由Hydrolight代码计算的辐射转移模拟,这是清澈的蓝色湖泊(意大利加尔达湖)的典型特征。这项工作将为更好地利用即将来临的高光谱任务(FLEX,PRISMA,Sentinel-10,HyspIRI)的卫星观测奠定基础。

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