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首页> 外文期刊>Journal of Geographic Information System >Use of GIS and Remote Sensing Technology as a Decision Support Tool in Flood Disaster Management: The Case of Southeast Louisiana, USA
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Use of GIS and Remote Sensing Technology as a Decision Support Tool in Flood Disaster Management: The Case of Southeast Louisiana, USA

机译:在洪水灾害管理中使用GIS和遥感技术作为决策支持工具:美国东南路易斯安那州的案例

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The primary objective of this paper was to identify flood-prone areas in Southeast of Louisiana to help decision-makers to develop appropriate adaptation strategies and flood prediction, and mitigation of the effects on the community. In doing so, the paper uses satellite remote sensing and Geographic Information System (GIS) data for this purpose. Elevation data was obtained from the National Elevation Dataset (NED) produced by the United States Geological Survey (USGS) seamless data warehouse. Satellite data was also acquired from USGS Earth explorer website. Topographical information on runoff characteristics such as slope, aspect and the digital elevation model was generated. Grid interpolation TIN (triangulated irregular network) was carried from the digital elevation model (DEM) to create slope map. Image Drape was performed using ERDAS IMAGINE Virtual GIS. The output image was then draped over the NED elevation data for visualization purposes with vertical exaggeration of 16 feet. Results of the study revealed that majority of the study area lies in low-lying and very low-lying terrain below sea level. Policy recommendation in the form of the need to design and build a comprehensive Regional Information Systems (RIS) in the form of periodic inventorying, monitoring and evaluation with full support of the governments was made for the study area.
机译:本文的主要目标是识别路易斯安那州东南部的洪水易发的地区,以帮助决策者制定适当的适应策略和洪水预测,并对社区的影响减轻影响。此外,本文采用卫星遥感和地理信息系统(GIS)数据为此目的。海拔数据是由美国地质调查(USGS)无缝数据仓库生产的全国海拔数据集(NED)获得。卫星数据也来自USGS Earthorer网站。生成了关于坡度,方面和数字高度模型等径流特性的地形信息。网格插值锡(三角形不规则网络)从数字高程模型(DEM)带来创建斜率图。使用Erdas Imagine Virtual GIS进行图像垂垂体。然后将输出图像覆盖在NED高程数据上以进行可视化目的,垂直夸张为16英尺。研究结果表明,大多数研究区位于海平面以下的低洼和非常低矮的地形。策略建议以必要的形式设计和建立一个全面的区域信息系统(RIS)以定期库存,监测和评估全面支持各国政府为研究区作出。

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