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Detecting Aquatic Vegetation Changes in Taihu Lake, China Using Multi-temporal Satellite Imagery

机译:利用多时相卫星图像探测中国太湖水生植被的变化

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摘要

We have measured the water quality and bio-optical parameters of 94 samples from Taihu Lake in situ and/or in the lab between June 10-18, 2007. A transparency-assisted decision tree was developed to more accurately divide the aquatic vegetation zone into a floating vegetation-dominated zone and a submerged vegetation-dominated zone, whose respective present biomass retrieval models were easily developed with an empirical approach because of the quasi-concurrence of ground field investigations with the satellite sensor flight over the lake. The significant quantitative relationships between the vegetation index NDVI (Normalized Difference Vegetation Index) of different images at different times were used to help develop the past biomass retrieval model on the basis of the present developed model. In Taihu Lake, the total covering area of aquatic vegetations decreased from 454.6 km2 in 2001 to 364.1 km2 in 2007. Correspondingly, the total biomass decreased from 489,000 tons in 2001 to 406,000 tons in 2007, suggesting that a great change in the ecological environment has been taking place in Taihu Lake over this period.
机译:我们已经测量了2007年6月10日至18日在原地和/或在实验室中从太湖中采集的94个样品的水质和生物光学参数。开发了透明辅助决策树,以更准确地将水生植被区划分为一个漂浮的以植被为主的区域和一个以淹没的植被为主的区域,由于通过湖上的卫星传感器飞行进行了地面实地调查的准并行,因此它们各自的当前生物量检索模型很容易通过经验方法开发。在当前开发的模型的基础上,利用不同时间的不同图像的植被指数NDVI(归一化植被指数)之间的显着定量关系来帮助开发过去的生物量检索模型。太湖的水生植物总覆盖面积从2001年的454.6 km 2 减少到2007年的364.1 km 2 。相应地,生物量总量也从2001年的489,000吨减少了。到2007年达到40.6万吨,这表明太湖生态环境在此期间发生了巨大变化。

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