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首页> 外文期刊>Environmental Geology >AgasedViz: visualizing groundwater availability of Ogallala Aquifer, USA
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AgasedViz: visualizing groundwater availability of Ogallala Aquifer, USA

机译:AgasedViz:可视化美国Ogallala Aquifer的地下水资源

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摘要

Water plays an immensely important role in human life, from household to agriculture and industrial development. Due to the heavy utilization and growing demands of water, the availability of water has become a high priority. Besides sources of surface water, such as streams, lakes, and rivers, aquifers are a significant source of water on Earth through the essential groundwater supply. In the United States, the Ogallala Aquifer, a primary geologic unit of the High Plains Aquifer System, is under massive exploitation, and the water level has decreased substantially. Analysis of the saturated thickness of this aquifer is urgently essential. Thus, an interactive visual analytics tool is necessary to enable users to visualize water availability and variation overtime at multiple locations within the region. Our interactive analytic tool carries out this by first retrieving and processing the data derived from the saturated thickness of groundwater using sensors integrated into the wells. Subsequently, a visualization consisting of a contour map and a time series heatmap is created based on the sensor data, to capture the trends and patterns, such as underground water distribution, spatial and temporal changes, and sudden decreases or increases of the water level. The visual components allow users to explore observational data, which organize the visual structure in supporting making an inference to gain insights. insights. This approach can be extended to apply for any geographic areas for water-level monitoring and controlling.
机译:从家庭到农业和工业发展,水在人类生活中发挥着极其重要的作用。由于水的大量利用和不断增长的需求,水的可用性已成为高度优先事项。除了诸如溪流,湖泊和河流之类的地表水水源外,通过重要的地下水供应,含水层还是地球上重要的水源。在美国,高平原含水层系统的主要地质单元Ogallala含水层正在大量开采,水位已大大降低。对该含水层的饱和厚度进行分析迫在眉睫。因此,交互式可视化分析工具对于使用户能够可视化该区域内多个位置的水供应量和随时间变化的情况是必不可少的。我们的交互式分析工具通过使用集成在井中的传感器首先检索和处理从地下水饱和厚度得出的数据来执行此操作。随后,基于传感器数据创建由轮廓图和时间序列热图组成的可视化图像,以捕获趋势和模式,例如地下水分布,空间和时间变化以及水位突然降低或升高。视觉组件允许用户浏览观察数据,这些观察数据可以组织视觉结构以支持进行推理以获取见解。见解。这种方法可以扩展到适用于任何地理区域的水位监测和控制。

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