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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Landsat 8/OLI Two Bands Ratio Algorithm for Chlorophyll-A Concentration Mapping in Hypertrophic Waters: An Application to West Lake in Hanoi (Vietnam)
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Landsat 8/OLI Two Bands Ratio Algorithm for Chlorophyll-A Concentration Mapping in Hypertrophic Waters: An Application to West Lake in Hanoi (Vietnam)

机译:用于肥厚水域叶绿素A浓度分布的Landsat 8 / OLI两带比率算法:在河内(越南)西湖的应用

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摘要

Monitoring chlorophyll-a concentration (Chl-a) in inland waters, particularly hypertrophic lake waters in megacities, is a critically important environmental issue. To enable long-term Chl-a monitoring using Landsat series sensors, development of a Chl-a estimation algorithm for the new Landsat sensor is requisite. This study aims to identify the most accurate algorithm for Chl-a estimation in hypertrophic waters using Landsat 8 images and in situ Chl-a data from West Lake and nine other hypertrophic lakes in Hanoi (Vietnam's capital). The best estimation was obtained by the ratio of two reflectances at 562 and 483 nm, corresponding to the ratio of the OLI band 3 versus band 2, termed the GrB2 algorithm. The GrB2 values using the reflectances of water samples and the Landsat images were correlated with the Chl-a by an exponential function (r2 = 0.64 to 0.82), and the estimated Chl-a were verified by the smallness of standard error (smaller than 10%) and degree of conformity with recent fish-kill phenomena that commonly occur in those lakes in summer and early spring. Because the availability of GrB2 is limited to waters with low levels of inorganic suspended matter, its extension to waters with much higher levels requires further investigation.
机译:监测内陆水域,特别是特大城市中肥厚的湖泊水域中的叶绿素a浓度(Chl-a)是至关重要的环境问题。为了使用Landsat系列传感器进行长期Chl-a监测,必须为新的Landsat传感器开发Chl-a估计算法。这项研究的目的是使用Landsat 8图像和来自西湖和河内(越南首都)的其他九个肥厚湖泊的 Cit-italic Chl-a数据,找出最肥厚的水中Chl-a估算算法。最佳估计是通过在562和483nm处的两个反射率之比获得的,对应于OLI波段3与波段2的比率,称为GrB 2 算法。利用水样和Landsat图像的反射率得出的GrB 2 值通过指数函数( r 2 = 0.64至0.82),并通过标准误差(小于10%)和与夏季和早春在这些湖泊中普遍发生的近期鱼类致死现象的符合程度来验证Chl-a的估计值。由于GrB 2 的可用性仅限于无机悬浮物含量低的水,因此将其扩展到无机悬浮物含量高的水需要进一步研究。

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