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Scales of heterogeneity of water quality in rivers: insights from high resolution maps based on integrated geospatial, sensor and ROV technologies.

机译:河流水质异质性的尺度:​​基于综合地理空间,传感器和ROV技术的高分辨率地图的见解。

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While the spatial heterogeneity of many aquatic ecosystems is acknowledged, rivers are often mistakenly described as homogenous and well-mixed. The collection and visualization of attributes like water quality is key to our perception and management of these ecosystems. The assumption of homogeneity can lead to the conclusion that data collection from discrete, discontinuous points in space or time provide a comprehensive estimate of condition. To counter this perception, we combined high-density data collection with spatial interpolation techniques to created two-dimensional maps of water quality. Maps of four riverine transitions and habitats - wetland to urban, river to reservoir, river to estuary and a groundwater intrusion - were constructed from the continuous data. The examples provided show that the most basic water quality parameters - temperature, conductivity, salinity, turbidity, and chlorophyll florescence - are heterogeneous at spatial scales smaller than those captured by common point sampling statistical strategies. The 2-dimensional, interpolation-based maps of the Hillsborough River (Tampa, FL) show significant influences of a variety of geographic features including tributary confluences, submarine groundwater inflow, and riparian interfaces. We conclude that many sampling strategies do not account for the type of patchy heterogeneity observed. The integration of existing in-situ sensors, inexpensive autonomous sampling platforms, and geospatial mapping techniques provides high resolution visualization that can adds a more comprehensive geographic perspective needed for environmental monitoring and assessment programs.
机译:尽管人们认识到许多水生生态系统在空间上的异质性,但人们常常错误地将河流描述为同质且混合得很好。诸如水质之类的属性的收集和可视化是我们对这些生态系统的感知和管理的关键。均质性的假设可以得出这样的结论,即从空间或时间的离散,不连续点收集数据可提供条件的全面估计。为了消除这种看法,我们将高密度数据收集与空间插值技术结合在一起,创建了水质二维地图。从连续数据中构建了四个河流过渡带和栖息地的地图-湿地到城市,河流到水库,河流到河口以及地下水入侵。所提供的示例表明,最基本的水质参数-温度,电导率,盐度,浊度和叶绿素花序-在空间尺度上是异质的,小于通过常规点采样统计策略所捕获的尺度。希尔斯伯勒河(佛罗里达州坦帕)的基于插值的二维地图显示了各种地理特征的重要影响,包括支流汇合,海底地下水流入和河岸界面。我们得出的结论是,许多采样策略并未解决观察到的斑块异质性类型。现有的原位传感器,廉价的自主采样平台和地理空间映射技术的集成提供了高分辨率的可视化效果,可以添加环境监测和评估程序所需的更全面的地理视角。

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