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Long time series of Landsat images to reconstruct river surface temperature and turbidity regimes of Guadalquivir Estuary

机译:长时序列Landsat影像重建瓜达尔基维尔河河口的地表温度和浊度状态

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摘要

In the last century the Guadalquivir River in Andalusia has been dramatically transformed affecting its ecological and hydrological functioning. In view of a new dredging plan to increase ship size and number arriving to Seville, a research consortium has started to study the state of the Guadalquivir Estuary. The Remote Sensing and GIS laboratory of Doñana Biological Station participates in the project with the aim to reconstruct the last 35 years regime of turbidity and river surface temperature (RST), both parameters revealing the estuarine response to natural and human-driven dynamics. Based on a long time series of Landsat images (TM and ETM+), we have developed accurate methods to systematically map RST and turbidity gradients across the last 100 km stretch of the River.\udWe present the results of applying an empirical model for river turbidity mapping and a physical model to map RST by using optical and thermal bands of TM and ETM + sensors. Both models were validated with ground-truth data and are used to reconstruct the historical dynamics of the Guadalquivir Estuary.
机译:上个世纪,安达卢西亚的瓜达尔基维尔河发生了巨大变化,影响了其生态和水文功能。鉴于一项新的疏plan计划将增加到达塞维利亚的船只的大小和数量,一个研究财团已开始研究瓜达尔基维尔河河口的状况。 Doñana生物站的遥感和GIS实验室参与了该项目,旨在重建过去35年的浊度和河面温度(RST)状况,这两个参数都揭示了河口对自然和人为动力的响应。基于长期的Landsat影像序列(TM和ETM +),我们开发了精确的方法来系统地绘制河流最后100公里段的RST和浊度梯度。\ ud我们提供了应用经验模型进行河流浊度的结果通过使用TM和ETM +传感器的光学带和热带,映射和物理模型来映射RST。两种模型均已通过地面数据验证,并用于重建瓜达尔基维尔河河口的历史动力学。

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