首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Influence of Particle Composition on Remote Sensing Reflectance and MERIS Maximum Chlorophyll Index Algorithm: Examples From Taihu Lake and Chaohu Lake
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Influence of Particle Composition on Remote Sensing Reflectance and MERIS Maximum Chlorophyll Index Algorithm: Examples From Taihu Lake and Chaohu Lake

机译:颗粒组成对遥感反射率和MERIS最大叶绿素指数算法的影响-以太湖和巢湖为例

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Using data collected from two eutrophic lakes located in eastern China (Taihu Lake, 2330 km and Chaohu Lake, 760 km), the influence of variable particle composition on remote sensing reflectance (Rrs, in sr) properties and on the Medium Resolution Imaging Spectrometer (MERIS) maximum chlorophyll index (MCI) algorithm for estimating near-surface chlorophyll-a concentrations (Chla, in ) is demonstrated. Although separated by a distance of only ∼200 km, the two lakes showed dramatic differences in particle composition, with Taihu Lake dominated by inorganic particles and Chaohu Lake dominated by organic particles. Such differences led to variable Rrs spectral slopes in the red and near-IR bands and perturbations to the MCI algorithm. A modified MCI algorithm (MCIT) was then developed to reduce the impact of turbidity caused by inorganic particles. Root-mean-square errors in Chla retrievals decreased from 129.5% to 43.5% when using this new approach compared with the MCI algorithm in Taihu Lake for Chla ranging between ∼5 and 100 . Application of this approach to other turbid water bodies, on the other hand, requires validation and possibly further tuning.
机译:使用从位于中国东部的两个富营养化湖泊(太湖2330公里和巢湖760公里)收集的数据,可变颗粒成分对遥感反射率(sr)和中分辨率成像光谱仪(展示了用于估计近地表叶绿素a浓度(Chla,in)的最大叶绿素指数(MCI)算法。尽管相距仅约200 km,但两个湖泊的颗粒组成却表现出巨大差异,其中太湖以无机颗粒为主,巢湖以有机颗粒为主。这样的差异导致红色和近红外波段的Rrs光谱斜率可变,并对MCI算法产生干扰。然后开发了一种改进的MCI算法(MCIT),以减少由无机颗粒引起的浊度的影响。与太湖地区的MCI算法相比,使用这种新方法时,Chla检索中的均方根误差从129.5%降低到43.5%,Chla的误差在5%至100之间。另一方面,将该方法应用于其他浑浊的水体需要验证并可能需要进一步调整。

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