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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Retrieval of Microcystis aentginosa Percentage From High Turbid and Eutrophia Inland Water: A Case Study in Taihu Lake
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Retrieval of Microcystis aentginosa Percentage From High Turbid and Eutrophia Inland Water: A Case Study in Taihu Lake

机译:从高浊度和富营养化内陆水中提取绿藻的百分率-以太湖为例

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摘要

Microcystis aentginosa (MA), which is one kind of cyanobacteria, is the primary algal species in Taihu Lake. The MA bloom has a significantly negative effect on the human health and water environment ecosystem. The monitoring and prediction of MA bloom become more and more critical for the security of drinking water source and environment in the Taihu Lake area. In this paper, the percentage of MA was estimated from remote-sensing reflectance via a novel spectral shape genetic optimization algorithm. This algorithm focuses on the shape of remote-sensing reflectance, and it can remove the influence of the amplitude of remote-sensing reflectance from the retrieval result. The accuracy of this optimization algorithm is acceptable according to both simulated and in situ data. The percentage of mean square root (RMSP) of the percentage of the phytoplankton absorption coefficient to the total absorption coefficient at 440 nm [$a_{rm r}$ (440 nm)] between the retrieved and the simulated is 18.39%. The RMSP of the total absorption coefficient at 440 nm [$a$ (440 nm)] between the retrieved and the simulated is 3.65%. The RMSP of the percentage of MA $[S_{rm f}]$ between the retrieved and the simulated is 13.60%. The RMSP of the colored dissolved organic matter (CDOM) absorption coefficient slope $[S]$ between the retrieved and the simulated is 5.89%. The RMSP of the particle backscatter coefficient slope $[Y]$ between the retrieved and the simulated is 30.46%. In Taihu Lake, the RMSPs of $a_{rm r}$ (440 nm), $a$ (440-n-n nm), $S_{rm f}$ , and $S$ between the retrieved and the measured are 36.59%, 35.70%, 19.25%, and 16.80%, respectively. The retrieved percentage of MA $(S_{rm f})$ and Scenedesmus obliquus  $(1 - S_{rm f})$ by this model from August 2006, October 2006, to November 2008 indicates the variation trend of algal species in different seasons. This trend accords with the results from previous studies and observations. This paper extends and advances the previous retrieval methods and confirms that the genetic optimization algorithm can be used to retrieve the information of water constituents in the high turbid and eutrophic inland water mass.
机译:藻蓝藻是一种微藻类,是太湖的主要藻类。 MA开花对人类健康和水环境生态系统具有显着的负面影响。对太湖地区MA水华的监测和预测对饮用水源和环境的安全保护越来越重要。在本文中,通过一种新颖的光谱形状遗传优化算法,根据遥感反射率估算了MA的百分比。该算法着眼于遥感反射率的形状,可以从检索结果中消除遥感反射率幅值的影响。根据仿真数据和现场数据,此优化算法的准确性都是可以接受的。所获得和模拟的浮游植物吸收系数相对于总吸收系数在440 nm [$ a_ {rm r} $(440 nm)]的均方根(RMSP)百分比为18.39%。所获得和模拟之间在440 nm [$ a $(440 nm)]处的总吸收系数的RMSP为3.65%。检索到的模拟值与MA $ [S_ {rm f}] $的百分比的RMSP为13.60%。检索到的模拟值之间的有色溶解有机物(CDOM)吸收系数斜率$ [S] $的RMSP为5.89%。检索到的和模拟的之间的粒子后向散射系数斜率$ [Y] $的RMSP为30.46%。在太湖中,取回的a $ {rm r} $(440 nm),$ a $(440-nn nm),$ S_ {rm f} $和$ S $的RMSP分别为36.59% ,分别为35.70%,19.25%和16.80%。通过该模型从2006年8月,2006年10月到2008年11月所获得的MA $(S_ {rm f})$和斜生栅藻$(1-S_ {rm f})$的百分比表明,藻类在不同物种中的变化趋势季节。这种趋势与以前的研究和观察结果一致。本文扩展并改进了先前的检索方法,并证实了遗传优化算法可用于检索高浊度和富营养化内陆水域中的水成分信息。

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